oleic acid has been researched along with Acute Respiratory Distress Syndrome in 231 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 23 (9.96) | 18.7374 |
1990's | 68 (29.44) | 18.2507 |
2000's | 100 (43.29) | 29.6817 |
2010's | 28 (12.12) | 24.3611 |
2020's | 12 (5.19) | 2.80 |
Authors | Studies |
---|---|
Baillie, JK; Bartnikowski, N; Bouquet, M; Fraser, JF; Hyslop, K; Ki, KK; Li Bassi, G; McAuley, DF; Millar, JE; Neyton, L; Obonyo, NG; Passmore, MR; Pedersen, S; Rozencwajg, S; See Hoe, LE; Suen, JY; Wildi, K | 1 |
Castro-Faria-Neto, HC; de Oliveira Rodrigues, S; Felippe Gonçalves-de-Albuquerque, C; Patricio de Almeida, MA; Silva, AR | 1 |
Chen, Z; He, S; Jiang, W; Xue, C; Yang, R; Zhang, X; Zhou, L | 1 |
Alhilal, M; Çınar, İ; Demirci, B; Erol, HS; Terzi, F | 1 |
Jiang, T; Leng, W; Zhong, S | 1 |
Chen, C; Cheng, X; Gao, B; Hu, Y; Huang, J; Li, Y; Tao, S; Wang, B; Wang, C; Wang, N; Zhang, Q | 1 |
Abram, J; Barnes, T; Enk, D; Glodny, B; Hell, T; Martini, J; Putzer, G; Ranalter, M; Spraider, P; Wagner, J | 1 |
Ghasemzadeh Rahbardar, M; Hosseinzadeh, H; Naraki, K; Razavi, BM | 1 |
Andrade, CF; Borges, AM; Félix, EA; Ferrari, RS; Silvello, D; Thomaz, LDGR; Ulbrich, JM | 1 |
Elzoghby, AO; Fang, JY; Hwang, TL; Lin, ZC; Liu, FC; Umoro, A; Yu, HP | 1 |
Gosling, M; Hartmann, EK; Kamuf, J; Rissel, R; Ruemmler, R; Ziebart, A | 1 |
Dakshinamurti, S; Elsayed, YN; Graham, R; Hinton, M | 1 |
Brand, G; Charpentier, D; Clavet-Lanthier, MÉ; Dupuis, J; Mihalache-Avram, T; Neagoe, PE; Nguyen, QT; Rhainds, D; Rhéaume, E; Sirois, MG; Tardif, JC; Théberge-Julien, G | 1 |
Choi, YH; Cui, Q; Jiang, J; Jin, M; Li, L; Li, Y; Piao, Y; Wang, C; Xu, H; Yan, G; Yan, X; Ye, J | 1 |
Garcia-Bardon, A; Hartmann, EK; Kamuf, J; Möllmann, C; Rümmler, R; Thomas, R; Ziebart, A | 1 |
Behem, C; Brown, R; Friedheim, T; Graessler, M; Kluttig, R; Reuter, D; Trepte, C; Zach, N; Zöllner, C | 1 |
Chen, G; Chen, Q; Huang, Y; Jin, J; Liu, L; Liu, S; Qiu, H; Teng, G; Wu, X; Yang, Y | 1 |
Dassow, C; Foerster, K; Goebel, U; Guttmann, J; Haberstroh, J; Priebe, HJ; Schumann, S | 1 |
Akella, A; Deshpande, SB; Pandey, R; Sharma, P | 1 |
Fichtner, F; Kaisers, UX; Kamprad, M; Kasper, M; Laudi, S; Sack, U; Voelker, MT | 1 |
Akella, A; Deshpande, SB; Patne, SC; Tiwari, AK | 1 |
Batchinsky, AI; Cap, AP; Langer, T; Meyer, AD; Montgomery, RK; Parida, BK; Prat, NJ | 1 |
Burth, P; Castro-Faria, MV; Castro-Faria-Neto, HC; Gonçalves-de-Albuquerque, CF; Silva, AR | 1 |
Chen, R; Cheng, Z; Li, W; Liu, Q; Zeng, Q; Zheng, H | 1 |
Feng, Y; Huang, L; Jin, J; Li, R; Sun, B; Xia, J; Yang, R; Zhan, Q; Zhang, L | 1 |
Gaikwad, RV; Hagawane, TN; Kshirsagar, NA | 1 |
He, B; Huang, Y; Li, S; Ren, S; Wang, H; Xie, W; Xu, D; Xu, M; Zhao, Z | 1 |
Chen, BJ; Hu, GH; Li, JH; Li, SJ; Pan, L; Tu, YS; Wang, HY; Wang, ZH; Xi, C; Yao, DC; Yu, YZ | 1 |
Chen, R; Du, J; Jiang, Y; Wu, W; Zhang, X; Zhu, Y | 1 |
Du, J; Jin, H; Li, T; Li, W; Liu, Z; Tang, C; Wang, C; Wang, H; Zhao, B | 1 |
Blanch, L; Fernández-Segoviano, P; García-Martín, C; Hotchkiss, JR; López-Aguilar, J; Murias, G; Piacentini, E; Saenz-Valiente, A; Villagrá, A | 1 |
Frevert, CW; Martin, TR; Matute-Bello, G | 1 |
Chen, CF; Feng, NH; Lin, HI; Wang, D; Yeh, DY | 1 |
Barman, SM; Gebber, GL | 1 |
Buchman, TG; Froehlich, KF; Girling, LG; Graham, MR; McManus, BM; Mutch, WA; Scafetta, N; Walker, EK; West, BJ | 1 |
Beers, MF; Fisher, AB | 1 |
Huang, Y; Li, Z; Liu, J; Luo, N; Wang, S | 1 |
Beppu, OS; Damasceno, MC; Lanza, FC; Leme, F; Luque, A; Paiva, KC; Yagui, AC | 1 |
Chen, CL; Li, TP; Zhu, LH | 1 |
Bao, Z; Gong, W; Wan, H; Xiang, Y; Ye, Q | 1 |
Bjertnaes, LJ; Kirov, MY; Kuklin, VN; Kuzkov, VV; Mortensen, R; Nordhus, KC; Suborov, EV; Waerhaug, K | 1 |
Bodenstein, M; Boehme, S; Duenges, B; Ganatti, S; Markstaller, K; Ning, Y; Roehrig, B; Wang, HM | 1 |
Jing, YL; Kong, XY; Li, HJ; Sun, Y; Wang, YL; Zhao, CX | 1 |
Dickson, T; Espenell, AE; Friedman, T; Girling, LG; Goertzen, AL; Mutch, WA; Pauls, RJ; Ruth Graham, M | 1 |
Fu, FY; He, B; Zhao, JY; Zhao, ZM | 1 |
Girling, LG; Goertzen, A; Graham, MR; Gulati, H; Kha, L; Mutch, WA | 1 |
Liu, L; Qi, Y; Qian, L; Sun, B; Sun, L; Wu, P | 1 |
Basel, A; Cakar, N; Esen, F; Nahum, A; Ozcan, PE; Sengul, T; Senturk, E; Strang, CM; Telci, L; Winterhalter, M | 1 |
Ikemura, M; Inoue, H; Nakagawa, Y; Nata, M; Usugi, E | 1 |
Chen, RC; Li, W; Liu, Q; Zeng, QS; Zhong, NS | 1 |
Chase, JG; Chiew, YS; Desaive, T; Janssen, N; Lambermont, B; Moeller, K; Schranz, C; Shaw, GM | 1 |
Gevenois, PA; Kafi, SA; Mélot, C; Naeije, R; Pagnamenta, A; Scillia, P | 1 |
Guimarães, CL; Rae, GA; Trentin, PG | 1 |
Liu, H; Zhao, J | 1 |
Golbidi, S; Hamasaki, N; Irie, T; Irikura, M; Moriuchi, H; Yang, C | 1 |
Irie, T; Irikura, M; Ishitsuka, Y; Moriuchi, H; Takase, J; Yang, C | 1 |
Abdel Kafi, S; Bejjani, G; Biarent, D; Hubloue, I; Leeman, M; Mélot, C; Naeije, R | 1 |
Huang, C; Liu, X | 2 |
Bai, C; Ding, F; Fang, X; He, L; Hong, Q; Matthay, MA; Su, X; Wu, J; Zhu, D | 1 |
Caironi, P; Carlesso, E; Gattinoni, L; Herrmann, P; Luecke, T; Meinhardt, JP; Pelosi, P; Quintel, M; Rylander, C; Taccone, P; Valenza, F | 1 |
Albrecht, DM; Bleyl, JU; de Abreu, MG; Hübler, M; Koch, T; Ragaller, M; Regner, M; Tschö, U; Vicent, O | 1 |
Auffray, JP; Bregeon, F; Carpentier, JP; Delliaux, S; Ghez, O; Lambert, D; Michelet, P; Papazian, L; Perrin, G; Roch, A; Saby, C; Thomas, P | 1 |
Chen, XR; Huang, H; Tao, J; Yang, TD | 1 |
Chen, LA; Liu, YN; Liu, YY; Xie, LX; Zhao, XM; Zhao, XW | 1 |
Chen, L; Liu, HL; Zhao, JY | 1 |
Golbidi, S; Irie, T; Irikura, M; Ishitsuka, Y; Kurita, S; Moriuchi, H; Yang, C | 1 |
Annat, G; Bayle, F; Guerin, C; Richard, JC; Viale, JP | 1 |
Atik, U; Cinel, I; Cinel, L; Ercan, B; Ercil, M; Kanik, A; Koksel, O; Ozdulger, A; Tamer, L | 1 |
Ghofrani, HA; Grimminger, F; Kohstall, MG; Morty, RE; Olschewski, A; Seeger, W; Vadász, I | 1 |
Bahk, JH; Goo, JM; Im, JG; Kim, YI; Lee, HJ; Lee, MW; Ryu, HG; Yoo, CG | 1 |
Bjertnaes, LJ; Kirov, MY; Kuklin, VN; Kuzkov, VV; Waerhaug, K | 1 |
Adams, AB; Broccard, AF; Dries, DJ; Hotchkiss, JR; Lim, SC; Marini, JJ; Simonson, DA | 2 |
Choudhury, S; Falusi, B; Ghosh, S; Goddard, ME; Marczin, N; Takata, M; Wilson, MR; Yamamoto, H | 1 |
Gainer, JL; Murray, RJ; Stennett, AK | 1 |
Ito, K; Iwasaka, H; Kira, S; Mizutani, A; Mori, M; Noguchi, T | 1 |
Gong, ZN; Rao, SY; Xu, GL; Yao, L; Yu, SQ; Zhang, SQ | 1 |
Liu, H; Zhang, D; Zhao, B; Zhao, J | 1 |
Kozlowski, J; Schuster, DP; Zhou, Z | 1 |
Bu, D; Gong, ZN; Wang, YF; Xu, GL; Yao, L; Yu, SQ; Zhang, SQ | 1 |
Bellardine, CL; Hoffman, A; Ingenito, EP; Lopez, F; Lutchen, KR; Sanborn, W; Suki, B | 1 |
Cui, HF; Du, GY; Gao, SR; Gao, W; He, R; Hui, LQ; Liang, RX; Wang, XR; Wu, ZL; Zhang, CY; Zhao, Y; Zhu, XX | 1 |
Cui, HF; Du, GY; Gao, SR; Gao, W; He, R; Hui, LQ; Lang, RX; Wang, XR; Wu, ZL; Zhang, CY; Zhao, Y; Zhu, XX | 1 |
Cao, HC; Chen, YY; Du, WB; Li, LJ; Ren, GP; Shao, Q; Xia, L; Yan, D; Zeng, Z; Zhang, HJ; Zhu, DF | 1 |
Costes, N; Gimenez, G; Guerin, C; Janier, M; Lavenne, F; Le Bars, D; Richard, JC; Tourvieille, C | 1 |
Chen, J; Wang, GZ; Zhao, JY | 1 |
Gavriely, N; Räsänen, J | 1 |
Arnerlöv, C; Bergstrand, U; Claesson, J; Hultin, M; Lehtipalo, S; Rocksen, D; Winsö, O | 1 |
Hedenstierna, G; Magnusson, A; Muders, T; Neumann, P; Putensen, C; Wrigge, H; Zinserling, J | 1 |
Carney, DE; DiRocco, JD; Gatto, LA; Landas, SK; Lutz, CJ; Nieman, GF; Pavone, LA | 1 |
Furlow, JD; Waddell, DS; Weidner, WJ | 1 |
Chen, X; Jiang, Y; Tu, PF; Xing, JJ; Zhao, JY | 1 |
Chen, YM; Ding, HM; Li, JQ; Liu, SQ; Qiu, HB; Shen, JF; Wu, B; Yang, Y | 1 |
Herrmann, P; Luecke, T; Meinhardt, JP; Pelosi, P; Quintel, M; Weiss, A | 1 |
Bletz, C; David, M; Heussel, CP; Karmrodt, J; Markstaller, K; Yuan, S | 1 |
Bregeon, F; Costes, N; Gimenez, G; Guerin, C; Janier, M; Lavenne, F; Le Bars, D; Richard, JC; Tourvieille, C | 1 |
Arnerlöv, C; Bergstrand, U; Claesson, J; Lehtipalo, S; Winsö, O | 1 |
Chen, YM; Li, JQ; Li, N; Qiu, HB; Shen, JF; Wu, B; Yang, Y | 1 |
Makita, K; Nakazawa, K; Yamakawa, N; Yokoyama, K | 1 |
de Carvalho, ME; Deheinzelin, D; Dolhnikoff, M; Martins, MA; Meireles, SI; Reis, LF | 1 |
Gozal, D; Lin, S; Walker, J; Xu, L; Yu, J | 1 |
Bertorelli, G; Bobbio, A; Carbognani, P; Corradi, A; Maria Cantoni, A; Mergoni, M; Pesci, A; Peveri, S; Rusca, M; Tincani, G | 1 |
He, JL; Lu, J; Xu, GL; Yu, SQ; Zhang, LL; Zhou, M | 1 |
Ai, T; Guan, L; Wen, T; Xing, J; Zhang, Y; Zhao, J | 1 |
Bozza, FA; Bozza, PT; Castro-Faria-Neto, HC; e Silva, JR; Giannella-Neto, A; Gomes, RN; Jandre, FC; Pino, AV; Prescott, SM; Salluh, JI; Silva, AR; Souza, HS; Stafforini, DM; Zimmerman, GA | 1 |
Koizumi, T; Kubo, K; Nakagawa, R; Ono, K; Otagiri, T; Tsushima, K; Yoshikawa, S | 1 |
Ascoli, FO; Bozza, FA; Carvalho, AR; Giannella-Neto, A; Jandre, FC; Pino, AV; Rodrigues, R; Salluh, J | 1 |
Bevilacqua, G; Di Cristofano, C; Gargani, L; Lionetti, V; Picano, E; Recchia, FA | 1 |
Brewer, LM; Haryadi, DG; Orr, JA | 1 |
Chen, ML; Ge, WH; Guo, JY; Han, YH; Lin, J; Shen, YJ; Shi, SL | 1 |
Berg, A; Bolten, JC; Hering, R; Kreyer, S; Putensen, C; Wrigge, H; Zinserling, J | 1 |
Bodenstein, M; Markstaller, K; Wang, HM | 1 |
Chen, HI; Hsieh, NK; Kao, SJ; Su, CF | 1 |
Anglade, D; Bayat, S; Briot, R; Grimbert, F; Martiel, JL | 1 |
Feng, XY; Li, TT; Liu, CR; Song, B; Xu, LX; Xu, RF; Zhang, H | 1 |
Banner, MJ; Gallagher, TJ; Modell, JH; Murray, IP | 1 |
Liu, XW | 1 |
Dickey, BF; Eiermann, GJ; Thrall, RS | 1 |
Baughman, RP; MacGee, J; Rashkin, M; Sahebjami, H; Stein, E | 1 |
Guo, S; He, B; Liao, SL; Lin, JH; Liu, LY; Mu, KJ; Mu, KM; Wang, JR; Xing, S; Xu, GR; Yang, SJ; Yuany, Y; Zhang, F; Zhao, GL | 1 |
Schuster, DP | 2 |
Adams, AB; Marini, JJ; Nahum, A; Ravenscraft, SA; Shapiro, RS | 1 |
Baehrendtz, S; Hedenstierna, G; Klingstedt, C; Ludwigs, U; Wegenius, G | 2 |
Lin, W; Thrall, RS; Volpe, BT | 1 |
Aoki, T; Asano, K; Fujita, H; Kawai, A; Mori, M; Oyamada, Y; Suzuki, Y; Takasugi, T; Yamaguchi, K; Yamasawa, F | 1 |
Grimbert, F; Maarek, JM | 1 |
Fu, AH; Liu, PH; Zhao, D | 1 |
Adams, AB; Chandra, A; Marini, JJ; Nahum, A; Niknam, J; Ravenscraft, SA | 1 |
Moriuchi, H; Yuizono, T | 1 |
Huang, SJ; Ren, XD; Sun, JJ; Zhu, ZG | 1 |
Downs, JB; López, FA; Putensen, C; Räsänen, J | 1 |
Downs, JB; Putensen, C; Räsänen, J | 1 |
Asano, K; Kawai, A; Kawashiro, T; Mori, M; Takasugi, T; Umeda, A; Yamaguchi, K; Yokoyama, T | 1 |
Curtis, SE; Peek, JT | 1 |
Billiar, TR; Exler, R; Imai, T; Jacob, TD; Motoyama, EK; Nakayama, DK; Nishio, I; Peitzman, AB; Shah, NS; Yousem, SA | 2 |
Flick, MR; Hoeffel, JM; Julien, M; Kent, B; Lesser, M; Milligan, SA; Webster, RO | 1 |
Asai, T; Iizuka, M; Kato, S; Nakamoto, T; Ono, K; Onuma, N | 1 |
Ryan, ME; Stock, MC | 1 |
Beilman, G | 1 |
Grotjohan, HP; Jansen, JR; van der Heijde, RM; Versprille, A; Wagenvoort, CA | 1 |
Arai, I; Moriuchi, H; Yuizono, T | 1 |
Broccard, AF; Marini, JJ; Ravenscraft, SA; Schmitz, LL; Shapiro, RS | 1 |
Brown, BH; Flewelling, R; Griffiths, H; Harris, ND; Leathard, AD; Lu, L; Morice, AH; Neufeld, GR; Nopp, P; Wang, W | 1 |
Du, HL; Hanaoka, K; Orii, R; Suwa, K; Yamada, Y | 1 |
Di, C; Liao, S; Ma, D; Sun, D; Zhao, M | 1 |
Cephas, GA; Corbin, RS; Frierson, HF; Goff, CD; Kron, IL; Theiss, SD; Tribble, CG; Young, JS | 1 |
Balassa, A; Germann, P; Kaider, A; Roeder, G; Schlag, G; Sladen, R; Zimpfer, M | 1 |
Ludwigs, U; Philip, A | 1 |
Cephas, GA; Edmisten, TD; Kron, IL; Rayhrer, CS; Tribble, CG; Young, JS | 2 |
Caronia, C; Lugo, N; Quinn, C; Rosenthal, C; Sagy, M | 1 |
Caruthers, SD; Harris, TR; Paschal, CB; Pou, NA; Roselli, RJ | 1 |
Gust, R; Kozlowski, J; Schuster, DP; Stephenson, AH | 1 |
Cai, YY; Lin, K; Lindwall, R; Niu, SF; Robertson, B; Sun, B; Zhu, GF | 1 |
Fukumoto, T; Moriuchi, H; Yuizono, T; Zaha, M | 1 |
Amaha, K; Makita, K; Matsuzawa, Y; Nakazawa, K; Uchida, T; Yokoyama, K | 1 |
Fujii, C; Fukuda, A; Kobayashi, R; Kohama, A; Kumada, K; Okumura, T; Suzuki, K | 1 |
Ballard, ET; Brilli, RJ; Jacobs, BR; Passerini, DJ; Smith, DJ | 1 |
Berglund, JE; Hedenstierna, G; Magnusson, A; Mondéjar, EF; Neumann, P | 1 |
Gust, R; Kozlowski, J; McCarthy, TJ; Schuster, DP; Stephenson, AH | 1 |
Cereda, MF; Frank, AR; Kolobow, T; Sparacino, ME; Trawöger, R | 1 |
Chendrasekhar, A; Moorman, DW; Paradise, NF; Reising, CA; Timberlake, GA; Wall, PL | 1 |
Asahara, T; Dohi, K; Noriyuki, T; Ohdan, H; Shibata, S; Yoshioka, S | 1 |
Hubmayr, RD; Martynowicz, MA; Minor, TA; Walters, BJ; Wilson, TA | 1 |
Evans, TW; Singh, S; Wort, J | 1 |
Gust, R; Kozlowski, JK; Schuster, DP; Stephenson, AH | 1 |
Chikazawa, Y; Furue, S; Hori, Y; Kuwabara, K; Maekawa, N; Matsukawa, A; Mikawa, K; Nishina, K; Obara, H; Ono, T; Shiga, M; Ueno, M; Yoshinaga, M | 1 |
Hua, Y; Jin, Z; Wang, Z; Xu, Y; Zhou, T | 1 |
Adams, AB; Broccard, A; Marini, JJ; Nahum, A; Schmitz, LL; Shapiro, RS | 1 |
Amakata, Y; Kumon, K; Matsui, J; Matsui, S; Ueda-Ishibashi, H; Yahagi, N | 1 |
Adams, AB; Blanch, L; Kloot, TE; Marini, JJ; Melynne Youngblood, A; Nahum, A; Shapiro, RS; Weinert, C | 1 |
Andersson, LG; Berglund, JE; Hedenstierna, G; Magnusson, A; Maripu, E; Neumann, P | 1 |
Brower, RG; Fessler, HE; Nam, AJ; Simon, BA | 1 |
Adams, A; Cakar, N; der Kloot, TV; Nahum, A; Youngblood, M | 1 |
Gayani, R; Kumar, KV; Mohan, IK; Naidu, MU; Rao, SM | 1 |
Girling, LG; Graham, MR; Harms, S; Kowalski, SE; Lefevre, GR; Mutch, WA | 1 |
Ballard, ET; Brilli, RJ; Jacobs, BR; Passerini, DJ; Smith, DJ; Zingarelli, B | 1 |
Bouckaert, Y; Brimioulle, S; Naeije, R; Pagnamenta, A; Wauthy, P | 1 |
Barr, HA; Bersten, AD; Davidson, KG; Dowling, KD; Doyle, IR; Nicholas, TE | 1 |
Couture, R; Da-Silva, S; Guimarães, CL; Rae, GA | 1 |
Baun, MM; Gould, DA | 1 |
Feng, G; Yang, Z; Zhou, Y | 1 |
Colmenero-Ruiz, M; Fernández-Mondejar, E; Jiménez-Quintana, MM; Pola-Gallego de Guzmán, D | 1 |
Furue, S; Hori, Y; Kuwabara, K; Matsukawa, A; Mikawa, K; Nishina, K; Obara, H; Ono, T; Shiga, M; Teshirogi, I; Tomita, Y; Ueno, M; Yoshinaga, M | 1 |
Gevenois, PA; Kafi, SA; Keyzer, C; Mélot, C; Naeije, R; Scillia, P | 1 |
Cheang, MS; Lefevre, GR; Mutch, WA | 1 |
Albrecht, M; Bleyl, J; Koch, T; Ragaller, M; Rasche, S; Regner, M; Tschö, U; Winkler, T | 1 |
Gionfriddo, MA; Sasso, DE; Smilowitz, HM; Syrbu, S; Thrall, RS; Vento, J; Weiner, RE | 1 |
Cui, S; Guo, X | 1 |
Lawless, N; Mayorga, MA; Tobias, S | 1 |
Hlastala, MP; Hübler, M; Polissar, NL; Schimmel, C; Shade, ED; Souders, JE | 1 |
Furue, S; Hori, Y; Kuwabara, K; Matsukawa, A; Mikawa, K; Nishina, K; Obara, H; Ono, T; Shiga, M; Tomita, Y; Ueno, M; Yoshinaga, M | 1 |
Arantes-Costa, FM; Hilkner-Silva, M; Leme, AS; Lichtenstein, A; Martins, MA; Saldiva, PH | 1 |
Brimioulle, S; Gust, R; Julien, V; Kozlowski, JK; Naeije, R; Schuster, DP | 1 |
Albrecht, M; Bleyl, JU; Hübler, M; Kanzow, M; Ragaller, M; Regner, M; Tschö, U; Vincent, O | 1 |
Rosen, HR; Tüchler, H | 1 |
Asano, K; Kawai, A; Mori, M; Takasugi, T; Umeda, A; Yamaguchi, K; Yokoyama, T | 1 |
Han, LP; Li, XY; Sun, XQ; Wu, XY; Zhang, LF; Zhang, R | 1 |
Coalson, JJ; Idell, S; James, KK | 1 |
Jousela, I; Linko, K; Mäkeläinen, A | 1 |
Delcroix, M; Leeman, M; Mélot, C; Naeije, R; Vachiéry, JL | 1 |
Peskar, BA; Pritze, S; Simmet, T; Thelen, KI | 1 |
Inatomi, K; Kira, S; Mimoto, T; Nagai, H; Yoneda, R | 1 |
Jebson, P; Kamal, GD; Sum-Ping, ST; Symreng, T | 1 |
Bolliger, C; Coetzee, A; Fourie, P | 1 |
Ackerman, NB; Aquilina, AT; Grant, BJ; Klocke, RA; Land, P; Saltzman, AR | 1 |
Forst, H; Messmer, K; Zwissler, B | 1 |
Casals, C; Garcia-Barreno, P; Herrera, L; Municio, AM | 1 |
Crawford, G; Meller, J; Presberg, K; Sznajder, JI; Wood, LD; Yanos, J | 1 |
Forst, H; Ishii, K; Messmer, K; Zwissler, B | 1 |
Casals, C; Garcia-Barreno, P; Herrera, L; Miguel, E; Municio, AM | 1 |
Wen, FQ | 1 |
G-Wagner, Z; Larsson, A; Sigurdsson, G; Svensjö, E; Wetterberg, T; Willén, H | 1 |
Zhou, YG | 1 |
Aulick, LH; Goodwin, CW; Mason, AD; Pruitt, BA; Sugimoto, T; Yukioka, N; Yukioka, T | 1 |
Collins, JF; de los Santos, R; Johanson, WG | 1 |
East, TD; in't Veen, JC; McJames, S; Pace, NL | 1 |
Shi, YX | 1 |
Amy, RW; Burka, JF; Devitt, HH; Jones, R; King, EG | 1 |
Andreasson, S; Bylock, A; Risberg, B; Smith, L | 1 |
Liu, BK; Mu, KM; Yan, S | 1 |
Erian, R; Magder, S; Roussos, C | 1 |
Artman, L; Cheney, FW; Rusch, VW | 1 |
Butler, RR; Spicer, KM | 1 |
Amundsen, T; Biello, DR; Kenzora, JL; Lange, LG; Perez, JE; Schuster, DP; Trulock, EP; Williamson, JR | 1 |
Ehrhart, IC; Granger, WM; Hofman, WF; Miller, DA | 1 |
Bishop, MJ; Cheney, FW; Huang, T | 1 |
4 review(s) available for oleic acid and Acute Respiratory Distress Syndrome
Article | Year |
---|---|
Acute Respiratory Distress Syndrome: Role of Oleic Acid-Triggered Lung Injury and Inflammation.
Topics: Animals; Cystic Fibrosis Transmembrane Conductance Regulator; Disease Models, Animal; Humans; Inflammation; Inflammation Mediators; Lung Injury; Oleic Acid; Pulmonary Edema; Respiratory Distress Syndrome; Sodium-Potassium-Exchanging ATPase | 2015 |
Animal models of acute lung injury.
Topics: Acute Disease; Animals; Bleomycin; Chemokines; Disease Models, Animal; Endothelium, Vascular; Endotoxins; Humans; Hyperoxia; Immunity, Innate; Lung; Lung Injury; Mice; Nitric Oxide; Oleic Acid; Pulmonary Alveoli; Receptors, Chemokine; Respiration, Artificial; Respiratory Distress Syndrome; Risk Factors; Sepsis; Species Specificity | 2008 |
Overview of the pathology of three widely used animal models of acute lung injury.
Topics: Animals; Bronchoalveolar Lavage; Disease Models, Animal; Dogs; Humans; Lipopolysaccharides; Lung; Oleic Acid; Respiratory Distress Syndrome; Sheep; Swine | 2008 |
ARDS: clinical lessons from the oleic acid model of acute lung injury.
Topics: Animals; Blood Coagulation; Disease Models, Animal; Eicosanoids; Extravascular Lung Water; Hemodynamics; Humans; Oleic Acid; Oleic Acids; Pulmonary Surfactants; Reactive Oxygen Species; Research; Respiratory Distress Syndrome | 1994 |
227 other study(ies) available for oleic acid and Acute Respiratory Distress Syndrome
Article | Year |
---|---|
Characterizing preclinical sub-phenotypic models of acute respiratory distress syndrome: An experimental ovine study.
Topics: Animals; Cytokines; Disease Models, Animal; Female; Lipopolysaccharides; Oleic Acid; Phenotype; Respiratory Distress Syndrome; Sheep | 2021 |
Mouse Model of Oleic Acid-Induced Acute Respiratory Distress Syndrome.
Topics: Animals; Critical Illness; Disease Models, Animal; Humans; Lung Injury; Mice; Oleic Acid; Respiratory Distress Syndrome | 2022 |
Biphasic positive airway pressure spontaneous breathing attenuates lung injury in an animal model of severe acute respiratory distress syndrome.
Topics: Animals; Continuous Positive Airway Pressure; Disease Models, Animal; Dogs; Lung; Lung Injury; Oleic Acid; Respiration, Artificial; Respiratory Distress Syndrome; Respiratory Mechanics | 2022 |
Effects of tocilizumab and dexamethasone on the downregulation of proinflammatory cytokines and upregulation of antioxidants in the lungs in oleic acid-induced ARDS.
Topics: Acute Lung Injury; Animals; Antibodies, Monoclonal, Humanized; Antioxidants; Cytokine Release Syndrome; Cytokines; Dexamethasone; Down-Regulation; Interleukin-6; Interleukin-8; Lung; Male; Oleic Acid; Rats; Respiratory Distress Syndrome; Superoxide Dismutase; Tumor Necrosis Factor-alpha; Up-Regulation | 2022 |
Angiopoietin-Like Protein 2 Is Increased in Obese Mouse Models of Lung Injury.
Topics: Acute Lung Injury; Angiopoietin-Like Protein 2; Animals; Lung; Male; Mice; Mice, Obese; Oleic Acid; Respiratory Distress Syndrome; RNA, Messenger; Saline Solution | 2022 |
D-tagatose protects against oleic acid-induced acute respiratory distress syndrome in rats by activating PTEN/PI3K/AKT pathway.
Topics: Animals; Fructose; Hexoses; Male; Oleic Acid; Phosphatidylinositol 3-Kinases; Proto-Oncogene Proteins c-akt; PTEN Phosphohydrolase; Rats; Rats, Sprague-Dawley; Respiratory Distress Syndrome | 2022 |
Individualised flow-controlled versus pressure-controlled ventilation in a porcine oleic acid-induced acute respiratory distress syndrome model.
Topics: Animals; Catecholamines; Oleic Acid; Positive-Pressure Respiration; Respiration, Artificial; Respiratory Distress Syndrome; Swine; Tidal Volume | 2023 |
Therapeutic effects of minocycline on oleic acid-induced acute respiratory distress syndrome (ARDS) in rats.
Topics: Animals; Anti-Inflammatory Agents; Antioxidants; bcl-2-Associated X Protein; Caspase 3; Humans; Male; Minocycline; Oleic Acid; Rats; Respiratory Distress Syndrome; Superoxide Dismutase; Tumor Necrosis Factor-alpha | 2023 |
Challenges and perspectives in porcine model of acute lung injury using oleic acid.
Topics: Acute Lung Injury; Animals; Disease Models, Animal; Female; Hemodynamics; Male; Oleic Acid; Pulmonary Edema; Reproducibility of Results; Respiratory Distress Syndrome; Respiratory Mechanics; Swine | 2019 |
Oleic acid-based nanosystems for mitigating acute respiratory distress syndrome in mice through neutrophil suppression: how the particulate size affects therapeutic efficiency.
Topics: Animals; Anti-Inflammatory Agents; Cytokines; Disease Models, Animal; Drug Liberation; Humans; Lipids; Lipopolysaccharides; Lung; Mice; Mice, Inbred C57BL; Nanocapsules; Neutrophil Activation; Neutrophils; Oleic Acid; Pancreatic Elastase; Particle Size; Peroxidase; Respiratory Distress Syndrome; Superoxides; Surface Properties; Tissue Distribution; Treatment Outcome | 2020 |
Bronchoalveolar Lavage and Oleic Acid-Injection in Pigs as a Double-Hit Model for Acute Respiratory Distress Syndrome (ARDS).
Topics: Animals; Bronchoalveolar Lavage; Disease Models, Animal; Humans; Injections; Oleic Acid; Respiratory Distress Syndrome; Swine | 2020 |
Lung ultrasound predicts histological lung injury in a neonatal model of acute respiratory distress syndrome.
Topics: Acute Lung Injury; Animals; Animals, Newborn; Blood Gas Analysis; Female; Hemodynamics; Lung; Male; Oleic Acid; Pulmonary Edema; Respiratory Distress Syndrome; Swine; Ultrasonography | 2020 |
Colchicine reduces lung injury in experimental acute respiratory distress syndrome.
Topics: Acute Lung Injury; Animals; Colchicine; Disease Models, Animal; Humans; Lung; Neutrophil Infiltration; Neutrophils; Oleic Acid; Rats; Respiratory Distress Syndrome | 2020 |
Protective Effect and Mechanism of Alprostadil in Acute Respiratory Distress Syndrome Induced by Oleic Acid in Rats.
Topics: Alprostadil; Animals; Apoptosis; Bronchoalveolar Lavage Fluid; Disease Models, Animal; Lung; Male; Mitogen-Activated Protein Kinases; NF-kappa B; Oleic Acid; Random Allocation; Rats; Rats, Sprague-Dawley; Respiratory Distress Syndrome; Signal Transduction | 2018 |
Oleic Acid-Injection in Pigs As a Model for Acute Respiratory Distress Syndrome.
Topics: Acute Lung Injury; Animals; Disease Models, Animal; Humans; Oleic Acid; Respiration, Artificial; Respiratory Distress Syndrome; Respiratory Function Tests; Swine | 2018 |
Invasive Hemodynamic Monitoring of Aortic and Pulmonary Artery Hemodynamics in a Large Animal Model of ARDS.
Topics: Animals; Blood Pressure; Cardiac Output; Disease Models, Animal; Female; Heart Failure; Hemodynamic Monitoring; Hemodynamics; Humans; Hypertension, Pulmonary; Male; Oleic Acid; Pulmonary Artery; Respiratory Distress Syndrome; Stroke Volume; Swine; Ventricular Dysfunction, Right | 2018 |
Effects of recruitment maneuvers with PEEP on lung volume distribution in canine models of direct and indirect lung injury.
Topics: Animals; Dogs; Humans; Lung Injury; Oleic Acid; Positive-Pressure Respiration; Respiratory Distress Syndrome; Tomography, X-Ray Computed | 2014 |
Flow-controlled expiration: a novel ventilation mode to attenuate experimental porcine lung injury.
Topics: Animals; Biopsy; Bronchoalveolar Lavage Fluid; Cytokines; Disease Models, Animal; Exhalation; Female; Lung; Lung Compliance; Lung Injury; Male; Oleic Acid; Positive-Pressure Respiration; Pulmonary Alveoli; Pulmonary Gas Exchange; Respiration, Artificial; Respiratory Distress Syndrome; Severity of Illness Index; Swine | 2014 |
Characterization of oleic acid-induced acute respiratory distress syndrome model in rat.
Topics: Animals; Cardiovascular Physiological Phenomena; Disease Models, Animal; Female; Heart Rate; Inflammation; Male; Necrosis; Oleic Acid; Pulmonary Edema; Pulmonary Ventilation; Rats; Respiratory Distress Syndrome; Respiratory Rate; Survival Rate | 2014 |
Characterization of a double-hit murine model of acute respiratory distress syndrome.
Topics: Animals; Cytokines; Disease Models, Animal; Hemodynamics; Lipopolysaccharides; Lung; Male; Mice; Mice, Inbred C57BL; Neutrophils; Oleic Acid; Pulmonary Edema; Respiratory Distress Syndrome; Systemic Inflammatory Response Syndrome; X-Ray Microtomography | 2014 |
Mesobuthus tamulus venom induces acute respiratory distress syndrome in rats involving additional mechanisms as compared to oleic acid model.
Topics: Analysis of Variance; Animals; Blood Pressure; Catheterization; Heart Rate; Histological Techniques; Hypoxia; Lung; Oleic Acid; Rats; Respiratory Distress Syndrome; Respiratory Rate; Scorpion Venoms; Time Factors | 2015 |
Low-Dose Heparin Anticoagulation During Extracorporeal Life Support for Acute Respiratory Distress Syndrome in Conscious Sheep.
Topics: Animals; Anticoagulants; Blood Cell Count; Cardiopulmonary Bypass; Cohort Studies; Critical Illness; Disease Models, Animal; Extracorporeal Membrane Oxygenation; Female; Flow Cytometry; Hemostasis; Heparin; Hypoxia; Oleic Acid; Platelet Aggregation; Platelet Count; Random Allocation; Respiration, Artificial; Respiratory Distress Syndrome; Sheep; Thrombelastography; Ventilator-Induced Lung Injury | 2015 |
[Effect of lung strain on pulmonary edema in dogs with acute respiratory distress syndrome].
Topics: Animals; Capillary Permeability; Disease Models, Animal; Dogs; Extravascular Lung Water; Functional Residual Capacity; Lung; Oleic Acid; Positive-Pressure Respiration; Pulmonary Edema; Respiratory Distress Syndrome; Tidal Volume | 2015 |
Mild hypothermia attenuate kidney injury in canines with oleic acid-induced acute respiratory distress syndrome.
Topics: Animals; Disease Models, Animal; Dogs; Hypothermia, Induced; Intestine, Small; Kidney; Liver; Lung; Oleic Acid; Respiratory Distress Syndrome | 2016 |
Dual hit lipopolysaccharide & oleic acid combination induced rat model of acute lung injury/acute respiratory distress syndrome.
Topics: Acute Lung Injury; Animals; Bronchoalveolar Lavage Fluid; Disease Models, Animal; Humans; Lipopolysaccharides; Lung; Oleic Acid; Rats; Rats, Wistar; Respiratory Distress Syndrome | 2016 |
Activation of Liver X Receptor Attenuates Oleic Acid-Induced Acute Respiratory Distress Syndrome.
Topics: Animals; Antioxidants; Benzoates; Benzylamines; Cholesterol; Cytokines; Female; Liver X Receptors; Lung; Male; Mice; Mice, Inbred C57BL; Mice, Knockout; Oleic Acid; Oxidative Stress; Respiratory Distress Syndrome | 2016 |
Necrostatin-1 protects against oleic acid-induced acute respiratory distress syndrome in rats.
Topics: Animals; Apoptosis; Bronchoalveolar Lavage Fluid; Cell Aggregation; Cell Count; Disease Models, Animal; Imidazoles; Immunohistochemistry; Indoles; Inflammation; Male; Necrosis; Oleic Acid; Protective Agents; Rats, Sprague-Dawley; Respiratory Distress Syndrome; Signal Transduction; Tumor Necrosis Factor-alpha | 2016 |
An experimental study on the impacts of inspiratory and expiratory muscles activities during mechanical ventilation in ARDS animal model.
Topics: Animals; Cytokines; Dogs; Exhalation; Inhalation; Lung; Oleic Acid; Positive-Pressure Respiration; Respiratory Distress Syndrome; Respiratory Muscles; Work of Breathing | 2017 |
Regulatory effects of hydrogen sulfide on IL-6, IL-8 and IL-10 levels in the plasma and pulmonary tissue of rats with acute lung injury.
Topics: Animals; Body Weight; Bronchoalveolar Lavage Fluid; Cell Differentiation; Hydrogen Sulfide; Interleukin-10; Interleukin-6; Interleukin-8; Leukocytes; Male; Oleic Acid; Rats; Rats, Sprague-Dawley; Respiratory Distress Syndrome | 2008 |
Effects of vascular flow and PEEP in a multiple hit model of lung injury in isolated perfused rabbit lungs.
Topics: Animals; Disease Models, Animal; Oleic Acid; Positive-Pressure Respiration; Pulmonary Circulation; Pulmonary Edema; Pulmonary Wedge Pressure; Rabbits; Respiratory Distress Syndrome; Ventilation-Perfusion Ratio | 2008 |
Inducible nitric oxide synthase expressions in different lung injury models and the protective effect of aminoguanidine.
Topics: Animals; Hydroxyl Radical; Male; Nitric Oxide Synthase Type II; Oleic Acid; Organ Size; Polymerase Chain Reaction; Pulmonary Artery; Pulmonary Circulation; Rats; Rats, Sprague-Dawley; Respiratory Distress Syndrome; RNA, Messenger | 2008 |
Variable rate ventilation strategies for the injured lung.
Topics: Animals; Humans; Lung Diseases; Oleic Acid; Respiration, Artificial; Respiratory Distress Syndrome; Respiratory Mechanics; Swine | 2008 |
Physiological noise versus white noise to drive a variable ventilator in a porcine model of lung injury.
Topics: Algorithms; Anesthesia; Animals; Blood Pressure; Body Temperature; Carbon Dioxide; Cardiac Output; Enzyme-Linked Immunosorbent Assay; Heart Rate; Humans; Interleukin-8; Lung Diseases; Oleic Acid; Organ Size; Oxygen; Pulmonary Circulation; Respiration, Artificial; Respiratory Distress Syndrome; Respiratory Mechanics; Signal Processing, Computer-Assisted; Swine; Tidal Volume; Vascular Resistance | 2008 |
Hyperoxia and acute lung injury.
Topics: Acute Disease; Animals; Bleomycin; Chemokines; Disease Models, Animal; Endothelium, Vascular; Endotoxins; Humans; Hyperoxia; Immunity, Innate; Lung; Lung Injury; Mice; Nitric Oxide; Oleic Acid; Pulmonary Alveoli; Receptors, Chemokine; Respiration, Artificial; Respiratory Distress Syndrome; Risk Factors; Sepsis; Species Specificity | 2008 |
[Effect of penehyclidine hydrochloride on oleic acid-acute lung injury in canine during ventilation].
Topics: Acute Lung Injury; Animals; Dogs; Male; Oleic Acid; Quinuclidines; Respiration, Artificial; Respiratory Distress Syndrome | 2009 |
Variable positive end-expiratory pressure can maintain oxygenation in experimental acute respiratory distress syndrome induced by oleic acid in dogs.
Topics: Animals; Blood Pressure; Disease Models, Animal; Dogs; Male; Oleic Acid; Oxygen; Positive-Pressure Respiration; Respiratory Distress Syndrome; Respiratory Mechanics; Time Factors | 2009 |
[Effect of MAPK signal transduction pathway inhibitor U0126 on aquaporin 4 expression in alveolar type II cells in rats with oleic acid-induced acute lung injury].
Topics: Acute Lung Injury; Animals; Aquaporin 4; Butadienes; Extravascular Lung Water; Gene Expression Regulation; Male; MAP Kinase Signaling System; Nitriles; Oleic Acid; Pulmonary Alveoli; Rats; Rats, Sprague-Dawley; Respiratory Distress Syndrome; RNA, Messenger | 2009 |
Humanized monoclonal antibody against the chemokine CXCL-8 (IL-8) effectively prevents acute lung injury.
Topics: Acute Lung Injury; Animals; Antibodies, Monoclonal; Bronchoalveolar Lavage; Capillary Permeability; Edema; Endotoxins; Female; Fibrin; Hypoxia; Interleukin-1; Interleukin-8; Lung; Male; Mice; Neutrophils; Oleic Acid; Rabbits; Respiratory Distress Syndrome; Tumor Necrosis Factor-alpha | 2010 |
Radiographic lung density assessed by computed tomography is associated with extravascular lung water content.
Topics: Acute Lung Injury; Algorithms; Animals; Dye Dilution Technique; Extravascular Lung Water; Hemodynamics; Lung; Oleic Acid; Pulmonary Gas Exchange; Reproducibility of Results; Respiratory Distress Syndrome; Sheep; Thermodilution; Tomography, X-Ray Computed | 2010 |
Ventilator-associated lung injury superposed to oleic acid infusion or surfactant depletion: histopathological characteristics of two porcine models of acute lung injury.
Topics: Acute Lung Injury; Animals; Bronchoalveolar Lavage Fluid; Disease Models, Animal; Female; Humans; Infusions, Intravenous; Male; Oleic Acid; Pulmonary Surfactants; Respiration, Artificial; Respiratory Distress Syndrome; Swine; Therapeutic Irrigation | 2010 |
[Experimental research of prevention and therapy effect of anisodamine on acute respiratory distress syndrome (ARDS)].
Topics: Animals; Disease Models, Animal; Female; Free Radical Scavengers; Lipid Peroxidation; Male; Oleic Acid; Rabbits; Random Allocation; Respiratory Distress Syndrome; Solanaceous Alkaloids | 2009 |
Quantitative computed tomography in porcine lung injury with variable versus conventional ventilation: recruitment and surfactant replacement.
Topics: Animals; Disease Models, Animal; Lung; Oleic Acid; Prospective Studies; Pulmonary Gas Exchange; Pulmonary Surfactants; Random Allocation; Respiration, Artificial; Respiratory Distress Syndrome; Respiratory Mechanics; Sus scrofa; Tidal Volume; Tomography, Spiral Computed | 2011 |
[Effects of baicalin on pulmonary functions of acute respiratory distress syndrome induced by oleic acid in rats].
Topics: Animals; Disease Models, Animal; Flavonoids; Male; Oleic Acid; Peroxidase; Phytotherapy; Rats; Rats, Sprague-Dawley; Respiratory Distress Syndrome | 2011 |
Resolution of pulmonary edema with variable mechanical ventilation in a porcine model of acute lung injury.
Topics: Acute Lung Injury; Animals; Disease Models, Animal; Extravascular Lung Water; Hemodynamics; Oleic Acid; Pulmonary Edema; Pulmonary Gas Exchange; Respiration, Artificial; Respiratory Distress Syndrome; Swine; Thermodilution; Time Factors; Tomography, X-Ray Computed | 2011 |
Inhaled NO contributes to lung repair in piglets with acute respiratory distress syndrome via increasing circulating endothelial progenitor cells.
Topics: Administration, Inhalation; Animals; Antigens, CD34; Apoptosis; Blotting, Western; Cells, Cultured; Cytokines; Endothelium, Vascular; Flow Cytometry; Immunoenzyme Techniques; Lung Injury; Nitric Oxide; Oleic Acid; Real-Time Polymerase Chain Reaction; Respiratory Distress Syndrome; Reverse Transcriptase Polymerase Chain Reaction; RNA, Messenger; Stem Cells; Swine | 2012 |
No additive effects of inhaled iloprost and prone positioning on pulmonary hypertension and oxygenation in acute respiratory distress syndrome.
Topics: Administration, Inhalation; Animals; Blood Pressure; Carotid Arteries; Cross-Over Studies; Drug Evaluation, Preclinical; Hypertension, Pulmonary; Hypoxia; Iloprost; Jugular Veins; Male; Oleic Acid; Oxygen; Prognosis; Prone Position; Prospective Studies; Pulmonary Artery; Random Allocation; Respiration, Artificial; Respiratory Distress Syndrome; Sus scrofa; Swine | 2012 |
Molecular-biological analysis of acute lung injury (ALI) induced by heat exposure and/or intravenous administration of oleic acid.
Topics: Acute Lung Injury; Administration, Intravenous; Animals; Disease Models, Animal; Embolism, Fat; Hot Temperature; Humans; Hyperthermia, Induced; Japan; Male; Oleic Acid; Rats; Rats, Wistar; Respiratory Distress Syndrome | 2012 |
Lung stress and strain during mechanical ventilation in animals with and without pulmonary acute respiratory distress syndrome.
Topics: Animals; Continuous Positive Airway Pressure; Disease Models, Animal; Dogs; Functional Residual Capacity; Linear Models; Lung; Male; Manometry; Oleic Acid; Respiratory Distress Syndrome; Tidal Volume; Tomography, X-Ray Computed | 2013 |
Physiological relevance and performance of a minimal lung model: an experimental study in healthy and acute respiratory distress syndrome model piglets.
Topics: Animals; Disease Models, Animal; Disease Progression; Lung; Models, Biological; Oleic Acid; Positive-Pressure Respiration; Respiratory Distress Syndrome; Respiratory Mechanics; Swine | 2012 |
Abnormal pulmonary vascular tone in canine oleic acid lung injury.
Topics: Animals; Blood Gas Analysis; Dogs; Hemodynamics; In Vitro Techniques; Muscle Tonus; Muscle, Smooth, Vascular; Oleic Acid; Respiratory Distress Syndrome; Severity of Illness Index | 2002 |
Endothelin ET(B) receptor-mediated mechanisms involved in oleic acid-induced acute lung injury in mice.
Topics: Acute Disease; Analysis of Variance; Animals; Atrasentan; Bosentan; Bronchoalveolar Lavage Fluid; Disease Models, Animal; Dose-Response Relationship, Drug; Endothelin Receptor Antagonists; Evans Blue; Lung; Male; Mice; Mice, Inbred Strains; Neutrophil Infiltration; Oleic Acid; Pyrimidines; Pyrrolidines; Receptor, Endothelin A; Receptor, Endothelin B; Respiratory Distress Syndrome; Sulfonamides | 2002 |
An experimental study of therapeutic effect of ACEI on chemical-induced ARDS in rats.
Topics: Acute Disease; Angiotensin-Converting Enzyme Inhibitors; Animals; Captopril; Disease Models, Animal; Endothelium, Vascular; Hypertension, Pulmonary; Male; Oleic Acid; Rats; Rats, Wistar; Respiratory Distress Syndrome | 2002 |
Preventive effect of phosphoenolpyruvate on hypoxemia induced by oleic acid in Guinea pigs.
Topics: Animals; Blood Gas Analysis; Capillary Permeability; Carbon Dioxide; Coloring Agents; Disease Models, Animal; Dose-Response Relationship, Drug; Drug Interactions; Evans Blue; Guinea Pigs; Hydrogen-Ion Concentration; Hypoxia; Lung; Male; Oleic Acid; Oxygen; Phosphoenolpyruvate; Random Allocation; Respiratory Distress Syndrome; Time Factors; Vascular Resistance | 2003 |
Oxidative stress in early stage of acute lung injury induced with oleic acid in guinea pigs.
Topics: Animals; Dose-Response Relationship, Drug; Female; Guinea Pigs; Male; Oleic Acid; Oxidative Stress; Respiratory Distress Syndrome | 2003 |
Endothelin receptor blockade in canine oleic acid-induced lung injury.
Topics: Animals; Antihypertensive Agents; Bosentan; Disease Models, Animal; Dogs; Drug Evaluation, Preclinical; Endothelin Receptor Antagonists; Infusions, Intravenous; Oleic Acid; Prospective Studies; Pulmonary Circulation; Pulmonary Gas Exchange; Pulmonary Wedge Pressure; Receptor, Endothelin A; Receptor, Endothelin B; Receptors, Endothelin; Respiratory Distress Syndrome; Sulfonamides; Vascular Resistance | 2003 |
The changes of plasma endothelin in oleic acid-induced acute lung injury and their implication.
Topics: Animals; Blood Gas Monitoring, Transcutaneous; Endothelins; Female; Male; Oleic Acid; Pulmonary Artery; Random Allocation; Rats; Rats, Wistar; Respiratory Distress Syndrome | 1999 |
Effect of astragalus on the endothelin in rats with acute lung injury.
Topics: Animals; Astragalus propinquus; Drugs, Chinese Herbal; Endothelins; Female; Lung; Male; Oleic Acid; Random Allocation; Rats; Rats, Wistar; Respiratory Distress Syndrome | 1999 |
Effect of continuous hemofiltration on hemodynamics, lung inflammation and pulmonary edema in a canine model of acute lung injury.
Topics: Albumins; Analysis of Variance; Animals; Biopsy; Blood Gas Analysis; Bronchoalveolar Lavage Fluid; Cytokines; Disease Models, Animal; Dogs; Female; Hemodynamics; Hemofiltration; Male; Oleic Acid; Pulmonary Edema; Pulmonary Gas Exchange; Random Allocation; Respiration, Artificial; Respiratory Distress Syndrome; Respiratory Mechanics; Severity of Illness Index; Single-Blind Method | 2003 |
An increase of abdominal pressure increases pulmonary edema in oleic acid-induced lung injury.
Topics: Abdomen; Animals; Extravascular Lung Water; Hemodynamics; Lung; Lung Compliance; Oleic Acid; Pressure; Pulmonary Edema; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Swine; Time Factors; Tomography, X-Ray Computed | 2004 |
[Reduction in the aggressiveness of ventilation by inhalation of perfluorohexane after therapy of oleic acid-induced respiratory failure].
Topics: Animals; Fluorocarbons; Hemodynamics; Oleic Acid; Pulmonary Circulation; Pulmonary Gas Exchange; Respiration, Artificial; Respiratory Distress Syndrome; Respiratory Mechanics; Sheep | 2004 |
Accuracy of the double indicator method for measurement of extravascular lung water depends on the type of acute lung injury.
Topics: Analysis of Variance; Animals; Disease Models, Animal; Extravascular Lung Water; Female; Hemodynamics; Hydrochloric Acid; Indicator Dilution Techniques; Oleic Acid; Prognosis; Prospective Studies; Pulmonary Edema; Random Allocation; Respiratory Distress Syndrome; Respiratory Mechanics; Swine | 2004 |
Changes in liquid clearance of alveolar epithelium after oleic acid-induced acute lung injury in rats.
Topics: Adrenergic beta-Agonists; Animals; Epithelium; Oleic Acid; Pulmonary Alveoli; Random Allocation; Rats; Rats, Wistar; Respiratory Distress Syndrome; Terbutaline | 2004 |
[The changes in effective local blood perfusion and compensatory ventilation in different lung areas of acute respiratory distress syndrome rabbits model].
Topics: Animals; Blood Gas Analysis; Hypoxia; Lung; Male; Oleic Acid; Positive-Pressure Respiration; Pulmonary Circulation; Rabbits; Respiratory Distress Syndrome | 2004 |
[Changes of carbon monoxide, nitric oxide levels and heme oxygenase system in acute respiratory distress syndrome induced by oleic acid].
Topics: Animals; Carbon Monoxide; Heme Oxygenase (Decyclizing); Male; Nitric Oxide; Oleic Acid; Rats; Rats, Sprague-Dawley; Respiratory Distress Syndrome | 2004 |
Preventive effect of tranilast on oleic acid-induced lung injury in guinea pigs.
Topics: Animals; Anti-Inflammatory Agents, Non-Steroidal; Capillary Permeability; Dose-Response Relationship, Drug; Guinea Pigs; Lung; Male; Oleic Acid; ortho-Aminobenzoates; Oxygen; Partial Pressure; Respiratory Distress Syndrome | 2004 |
Effects of positive end-expiratory pressure on the sigmoid equation in experimental acute lung injury.
Topics: Analysis of Variance; Animals; Lung Volume Measurements; Oleic Acid; Positive-Pressure Respiration; Respiratory Distress Syndrome; Respiratory Mechanics; Statistics, Nonparametric; Swine | 2004 |
Effects of N-acetylcysteine on oxidant-antioxidant balance in oleic acid-induced lung injury.
Topics: Acetylcysteine; Animals; Antioxidants; Disease Models, Animal; Drug Administration Schedule; Female; Injections, Intravenous; Lung; Malondialdehyde; Oleic Acid; Oxidative Stress; Peroxidase; Rats; Rats, Wistar; Respiratory Distress Syndrome; Sodium-Potassium-Exchanging ATPase; Time Factors | 2004 |
Oleic acid inhibits alveolar fluid reabsorption: a role in acute respiratory distress syndrome?
Topics: Animals; Biomarkers; Cell Line; Disease Models, Animal; In Vitro Techniques; Ion Transport; Male; Oleic Acid; Ouabain; Patch-Clamp Techniques; Pulmonary Alveoli; Pulmonary Edema; Rabbits; Reference Values; Respiratory Distress Syndrome; Sodium; Sodium-Potassium-Exchanging ATPase; Water-Electrolyte Balance | 2005 |
Acute lung injury: effects of prone positioning on cephalocaudal distribution of lung inflation--CT assessment in dogs.
Topics: Animals; Disease Models, Animal; Dogs; Female; Hemodynamics; Lung; Male; Oleic Acid; Prone Position; Pulmonary Gas Exchange; Random Allocation; Respiration, Artificial; Respiratory Distress Syndrome; Statistics, Nonparametric; Supine Position; Tidal Volume; Tomography, X-Ray Computed | 2005 |
Extravascular lung water assessed by transpulmonary single thermodilution and postmortem gravimetry in sheep.
Topics: Animals; Blood Gas Analysis; Disease Models, Animal; Extravascular Lung Water; Humans; Inflammation; Lipopolysaccharides; Lung; Oleic Acid; Pulmonary Artery; Pulmonary Edema; Random Allocation; Reproducibility of Results; Respiratory Distress Syndrome; Sheep; Thermodilution | 2004 |
Intercomparison of recruitment maneuver efficacy in three models of acute lung injury.
Topics: Analysis of Variance; Animals; Disease Models, Animal; Lung Compliance; Lung Volume Measurements; Oleic Acid; Pneumonia, Pneumococcal; Positive-Pressure Respiration; Probability; Pulmonary Gas Exchange; Respiration, Artificial; Respiratory Distress Syndrome; Respiratory Function Tests; Respiratory Mechanics; Risk Factors; Sensitivity and Specificity; Swine | 2004 |
Transient hemodynamic effects of recruitment maneuvers in three experimental models of acute lung injury.
Topics: Analysis of Variance; Animals; Cardiac Output; Disease Models, Animal; Female; Hemodynamics; Lung Volume Measurements; Male; Oleic Acid; Pneumonia, Pneumococcal; Positive-Pressure Respiration; Probability; Pulmonary Gas Exchange; Respiration, Artificial; Respiratory Distress Syndrome; Risk Factors; Sensitivity and Specificity; Swine | 2004 |
Effects of inhaled carbon monoxide on acute lung injury in mice.
Topics: Administration, Inhalation; Animals; Bronchoalveolar Lavage Fluid; Carbon Monoxide; Cytokines; Disease Models, Animal; Injections, Intravenous; L-Selectin; Lipopolysaccharides; Lung; Macrophage-1 Antigen; Male; Mice; Mice, Inbred C57BL; Neutrophil Activation; Neutrophils; Oleic Acid; Oxygen; Respiratory Distress Syndrome; Tumor Necrosis Factor-alpha | 2005 |
The effect of trans sodium crocetinate (TSC) in a rat oleic acid model of acute lung injury.
Topics: Animals; Antioxidants; Carotenoids; Male; Oleic Acid; Rats; Rats, Sprague-Dawley; Respiratory Distress Syndrome; Vitamin A | 2005 |
Effect of Ulinastatin, a human urinary trypsin inhibitor, on the oleic acid-induced acute lung injury in rats via the inhibition of activated leukocytes.
Topics: Acute Disease; Animals; Capillary Permeability; Disease Models, Animal; Glycoproteins; Injections, Intravenous; Leukocytes; Leukopenia; Male; Oleic Acid; Peroxidase; Rats; Rats, Wistar; Respiratory Distress Syndrome; Trypsin Inhibitors; Tumor Necrosis Factor-alpha | 2005 |
Attenuation of acute lung injury in mice by oxymatrine is associated with inhibition of phosphorylated p38 mitogen-activated protein kinase.
Topics: Alkaloids; Animals; Dexamethasone; Disease Models, Animal; Drug Administration Schedule; Drug Antagonism; Drug Evaluation, Preclinical; Injections, Intraperitoneal; Injections, Intravenous; Lung; Male; Medicine, Chinese Traditional; Mice; Microscopy, Electron, Scanning; Oleic Acid; Organ Size; p38 Mitogen-Activated Protein Kinases; Phosphorylation; Quinolizines; Respiratory Distress Syndrome; Sophora; Tumor Necrosis Factor-alpha | 2005 |
Superoxide anion, the main species of ROS in the development of ARDS induced by oleic acid.
Topics: Animals; Blood Gas Analysis; Electron Spin Resonance Spectroscopy; Luminescent Measurements; Lung; Male; Oleic Acid; Rats; Rats, Sprague-Dawley; Reactive Oxygen Species; Respiratory Distress Syndrome; Superoxide Dismutase; Superoxides | 2004 |
Physiologic, biochemical, and imaging characterization of acute lung injury in mice.
Topics: Animals; Bronchoalveolar Lavage; Disease Models, Animal; Drug Synergism; Endotoxins; Fluorodeoxyglucose F18; Mice; Mice, Inbred C57BL; Microscopy, Electron; Neutrophil Infiltration; Neutrophils; Oleic Acid; Peroxidase; Positron-Emission Tomography; Prostaglandins; Radiopharmaceuticals; Respiratory Distress Syndrome; Tomography, X-Ray Computed | 2005 |
[Effect of epigallocatechingallate on acute lung injury induced by oleic acid in mice].
Topics: Animals; Catechin; Lung; Male; Mice; Oleic Acid; p38 Mitogen-Activated Protein Kinases; Phosphorylation; Protective Agents; Respiratory Distress Syndrome; Tumor Necrosis Factor-alpha | 2005 |
Heterogeneous airway versus tissue mechanics and their relation to gas exchange function during mechanical ventilation.
Topics: Animals; Computer Simulation; Female; Lung; Models, Biological; Oleic Acid; Pulmonary Gas Exchange; Respiration, Artificial; Respiratory Distress Syndrome; Sheep; Therapy, Computer-Assisted; Treatment Outcome | 2005 |
[Therapeutic effect of Qingkailing and methylprednisolone injection alone or combined on the acute lung injury induced by oleic acid in rabbits].
Topics: Animals; Anti-Inflammatory Agents; Blood Gas Analysis; Drug Therapy, Combination; Drugs, Chinese Herbal; Female; Lung; Male; Methylprednisolone; Oleic Acid; Phytotherapy; Plants, Medicinal; Rabbits; Random Allocation; Respiratory Distress Syndrome; Respiratory Function Tests | 2005 |
[Therapeutic effect of qingkailing and shengmai injection alone or combined on the acute lung injury induced by oleic acid in rabbits].
Topics: Animals; Carbon Dioxide; Catalase; Drug Combinations; Drug Therapy, Combination; Drugs, Chinese Herbal; Female; L-Lactate Dehydrogenase; Lung; Male; Malondialdehyde; Oleic Acid; Oxygen; Plants, Medicinal; Rabbits; Random Allocation; Respiration; Respiratory Distress Syndrome | 2005 |
[Effects of Gardenia-aweto compound by different extraction method on antagonizing acute respiratory distress syndrome].
Topics: Animals; Cordyceps; Drug Combinations; Drugs, Chinese Herbal; Female; Gardenia; Lepidoptera; Male; Materia Medica; Oleic Acid; Phytotherapy; Pulmonary Gas Exchange; Rabbits; Random Allocation; Respiratory Distress Syndrome | 2005 |
Quantitative assessment of regional alveolar ventilation and gas volume using 13N-N2 washout and PET.
Topics: Administration, Inhalation; Algorithms; Animals; Computer Simulation; Female; Image Interpretation, Computer-Assisted; Metabolic Clearance Rate; Models, Biological; Nitrogen; Nitrogen Radioisotopes; Oleic Acid; Positron-Emission Tomography; Pulmonary Alveoli; Pulmonary Ventilation; Radioisotope Dilution Technique; Radiopharmaceuticals; Respiratory Distress Syndrome; Swine; Tidal Volume | 2005 |
[Preventive effects and mechanism of heme oxygenase-1 activation on acute respiratory distress syndrome in rats].
Topics: Animals; Blotting, Western; Bronchoalveolar Lavage Fluid; Enzyme-Linked Immunosorbent Assay; Heme Oxygenase-1; Hemoglobins; Interleukin-8; Male; Oleic Acid; Rats; Rats, Sprague-Dawley; Respiratory Distress Syndrome; Reverse Transcriptase Polymerase Chain Reaction; RNA, Messenger; Tumor Necrosis Factor-alpha | 2005 |
Response of acoustic transmission to positive airway pressure therapy in experimental lung injury.
Topics: Acoustic Stimulation; Acoustics; Animals; Hemodynamics; Oleic Acid; Positive-Pressure Respiration; Respiratory Distress Syndrome; Swine | 2005 |
Intestinal circulation, oxygenation and metabolism is not affected by oleic acid lung injury.
Topics: Animals; Disease Models, Animal; Female; Injections, Intravenous; Intestines; Metabolic Clearance Rate; Oleic Acid; Oxygen; Respiratory Distress Syndrome; Swine; Tissue Distribution | 2005 |
Spontaneous breathing with airway pressure release ventilation favors ventilation in dependent lung regions and counters cyclic alveolar collapse in oleic-acid-induced lung injury: a randomized controlled computed tomography trial.
Topics: Animals; Continuous Positive Airway Pressure; Disease Models, Animal; Image Interpretation, Computer-Assisted; Oleic Acid; Oxygen Consumption; Pulmonary Alveoli; Radiography; Random Allocation; Reference Values; Respiration; Respiratory Distress Syndrome; Swine; Tidal Volume; Treatment Outcome | 2005 |
Dynamic alveolar mechanics in four models of lung injury.
Topics: Animals; Disease Models, Animal; Hemodynamics; Hypoxia; Lipopolysaccharides; Male; Oleic Acid; Prospective Studies; Pulmonary Alveoli; Pulmonary Edema; Pulmonary Gas Exchange; Rats; Rats, Sprague-Dawley; Respiration, Artificial; Respiratory Distress Syndrome; Respiratory Mechanics | 2006 |
Measurement of the filtration coefficient (Kfc) in the lung of Gallus domesticus and the effects of increased microvascular permeability.
Topics: Amiloride; Animals; Cadherins; Capillary Permeability; Chickens; Filtration; In Vitro Techniques; Lung; Oleic Acid; Permeability; Respiratory Distress Syndrome; Species Specificity | 2006 |
Effects of salvianolic acids on erythrocyte deformability in oleic acid induced acute lung injury in rabbits.
Topics: Acute Disease; Animals; Benzofurans; Blood Gas Analysis; Caffeic Acids; Disease Models, Animal; Erythrocyte Deformability; Lactates; Lung Injury; Male; Oleic Acid; Rabbits; Respiratory Distress Syndrome; Time Factors | 2006 |
[Comparison of single-indicator thermodilution versus gravimetric measurement in determination of extra-vascular lung water in dogs with acute respiratory distress syndrome].
Topics: Animals; Disease Models, Animal; Dogs; Extravascular Lung Water; Female; Hydrochloric Acid; Male; Oleic Acid; Random Allocation; Respiratory Distress Syndrome; Respiratory Function Tests; Sensitivity and Specificity; Thermodilution | 2006 |
Oleic acid vs saline solution lung lavage-induced acute lung injury: effects on lung morphology, pressure-volume relationships, and response to positive end-expiratory pressure.
Topics: Animals; Disease Models, Animal; Lung; Lung Volume Measurements; Oleic Acid; Positive-Pressure Respiration; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Severity of Illness Index; Sodium Chloride; Swine; Therapeutic Irrigation | 2006 |
Quantification of atelectatic lung volumes in two different porcine models of ARDS.
Topics: Animals; Blood Pressure; Continuous Positive Airway Pressure; Disease Models, Animal; Image Processing, Computer-Assisted; Lung Volume Measurements; Oleic Acid; Pulmonary Alveoli; Pulmonary Atelectasis; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Sodium Chloride; Swine; Tomography, X-Ray Computed | 2006 |
Alveolar recruitment assessed by positron emission tomography during experimental acute lung injury.
Topics: Animals; Lung Volume Measurements; Oleic Acid; Positive-Pressure Respiration; Positron-Emission Tomography; Posture; Pulmonary Atelectasis; Pulmonary Gas Exchange; Random Allocation; Respiratory Distress Syndrome; Respiratory Function Tests; Swine | 2006 |
Negative mesenteric effects of lung recruitment maneuvers in oleic acid lung injury are transient and short lasting.
Topics: Animals; Antihypertensive Agents; Blood Flow Velocity; Blood Gas Analysis; Blood Pressure; Cardiac Output; Disease Models, Animal; Drug Evaluation, Preclinical; Epoprostenol; Female; Infusions, Intravenous; Intestinal Mucosa; Jejunum; Lactic Acid; Lung Volume Measurements; Oleic Acid; Oxygen Consumption; Random Allocation; Respiration, Artificial; Respiratory Distress Syndrome; Respiratory Mechanics; Splanchnic Circulation; Swine; Time Factors | 2007 |
[Effect of lung stress index on titration of positive end-expiratory pressure at post-recruitment in three canine acute respiratory distress syndrome models].
Topics: Animals; Disease Models, Animal; Dogs; Female; Hydrochloric Acid; Lung; Lung Compliance; Male; Oleic Acid; Positive-Pressure Respiration; Respiratory Distress Syndrome; Respiratory Function Tests; Sodium Chloride | 2006 |
Effect of positive end-expiratory pressure on inflammatory response in oleic acid-induced lung injury and whole-lung lavage-induced lung injury.
Topics: Analysis of Variance; Animals; Blood Gas Analysis; Blood Pressure; Bronchoalveolar Lavage; Bronchoalveolar Lavage Fluid; Disease Models, Animal; Interleukin-8; Oleic Acid; Pneumonia; Positive-Pressure Respiration; Proteins; Pulmonary Atelectasis; Pulmonary Edema; Rabbits; Respiration, Artificial; Respiratory Distress Syndrome; Sodium Chloride; Time Factors; Tracheostomy | 2007 |
Effects of overinflation on procollagen type III expression in experimental acute lung injury.
Topics: Animals; Collagen Type III; Disease Models, Animal; Interleukin-1beta; Oleic Acid; Positive-Pressure Respiration; Random Allocation; Rats; Respiratory Distress Syndrome; RNA, Messenger; Transcription, Genetic | 2007 |
Behaviours of pulmonary sensory receptors during development of acute lung injury in the rabbit.
Topics: Animals; Lung; Male; Mechanoreceptors; Nerve Fibers, Unmyelinated; Nociceptors; Oleic Acid; Organ Size; Rabbits; Respiratory Distress Syndrome; Vagus Nerve | 2007 |
Alpha glucocorticoid receptor expression in different experimental rat models of acute lung injury.
Topics: Animals; Barotrauma; Disease Models, Animal; Immunohistochemistry; Lung; Male; Oleic Acid; Rats; Rats, Wistar; Receptors, Glucocorticoid; Respiration, Artificial; Respiratory Distress Syndrome | 2008 |
[Protective effect of rupatadine against oleic acid-induced acute lung injury in rabbits].
Topics: Animals; Blood Gas Analysis; Bronchoalveolar Lavage Fluid; Cyproheptadine; Enzyme-Linked Immunosorbent Assay; Intercellular Adhesion Molecule-1; Interleukin-8; Lung; Male; Oleic Acid; Platelet Activating Factor; Protective Agents; Rabbits; Random Allocation; Respiratory Distress Syndrome | 2007 |
Protection of echinacoside against acute lung injury caused by oleic acid in rats.
Topics: Animals; Blood Gas Analysis; Body Water; Electron Spin Resonance Spectroscopy; Free Radicals; Glycosides; Male; Oleic Acid; Peroxidase; Rats; Rats, Sprague-Dawley; Respiratory Distress Syndrome | 2007 |
Lung production of platelet-activating factor acetylhydrolase in oleic acid-induced acute lung injury.
Topics: 1-Alkyl-2-acetylglycerophosphocholine Esterase; Animals; Bronchoalveolar Lavage Fluid; Female; Immunohistochemistry; Kinetics; Lung; Oleic Acid; Respiratory Distress Syndrome; Swine; Time Factors | 2007 |
Cardiovascular responses to high-frequency oscillatory ventilation during acute lung injury in sheep.
Topics: Analysis of Variance; Animals; Blood Gas Analysis; Blood Pressure; Cardiac Output; Disease Models, Animal; High-Frequency Ventilation; Oleic Acid; Positive-Pressure Respiration; Random Allocation; Respiratory Distress Syndrome; Sheep; Vascular Resistance | 2007 |
Positive end-expiratory pressure at minimal respiratory elastance represents the best compromise between mechanical stress and lung aeration in oleic acid induced lung injury.
Topics: Animals; Disease Models, Animal; Oleic Acid; Positive-Pressure Respiration; Respiratory Distress Syndrome; Respiratory Mechanics; Stress, Mechanical; Swine | 2007 |
Early detection of acute lung injury uncoupled to hypoxemia in pigs using ultrasound lung comets.
Topics: Animals; Early Diagnosis; Echocardiography; Extravascular Lung Water; Female; Hypoxia; Male; Oleic Acid; Pulmonary Edema; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Swine | 2007 |
Measurement of functional residual capacity of the lung by partial CO2 rebreathing method during acute lung injury in animals.
Topics: Air; Animals; Breath Tests; Carbon Dioxide; Disease Models, Animal; Female; Functional Residual Capacity; Injections, Intravenous; Male; Oleic Acid; Positive-Pressure Respiration; Reproducibility of Results; Respiratory Distress Syndrome; Swine | 2007 |
[Effects of volatie oil of Schizonepeta tenuifolia Briq herb and Saposhnikovia divaricata Schischke root on proinflammatory cytokine expression and regulation].
Topics: Animals; Anti-Inflammatory Agents; Apiaceae; Drug Combinations; Gene Expression Regulation; Immunohistochemistry; Intercellular Adhesion Molecule-1; Lamiaceae; Lipopolysaccharides; Male; Oils, Volatile; Oleic Acid; Plant Oils; Plants, Medicinal; Random Allocation; Rats; Rats, Wistar; Respiratory Distress Syndrome; RNA, Messenger; Transcription Factor RelA | 2007 |
Spontaneous breathing during airway pressure release ventilation in experimental lung injury: effects on hepatic blood flow.
Topics: Animals; Cardiac Output; Continuous Positive Airway Pressure; Cross-Over Studies; Liver; Liver Circulation; Oleic Acid; Oxygen; Respiration; Respiratory Distress Syndrome; Swine | 2008 |
Protective effects of propofol on acute lung injury induced by oleic acid in conscious rats.
Topics: Animals; Disease Models, Animal; Hemodynamics; Hypnotics and Sedatives; Male; Oleic Acid; Propofol; Rats; Rats, Sprague-Dawley; Respiratory Distress Syndrome | 2008 |
Monitoring the capillary-alveolar leakage in an A.R.D.S. model using broncho-alveolar lavage.
Topics: Animals; Bronchoalveolar Lavage; Bronchoscopes; Capillaries; Dextrans; Disease Models, Animal; Dogs; Extravascular Lung Water; Fluorescein-5-isothiocyanate; Models, Biological; Oleic Acid; Proteins; Pulmonary Alveoli; Respiratory Distress Syndrome | 2008 |
Therapeutic effect of hyperoxygenated solution on acute lung injury induced by oleic acid.
Topics: Animals; Female; Hypoxia; Infusions, Intravenous; Lung; Male; Oleic Acid; Oxygen; Ozone; Rabbits; Respiratory Distress Syndrome; Sodium Chloride | 2008 |
Titration of PEEP by the arterial minus end-tidal carbon dioxide gradient.
Topics: Animals; Cardiac Output; Dogs; Oleic Acid; Oleic Acids; Positive-Pressure Respiration; Pulmonary Gas Exchange; Respiratory Dead Space; Respiratory Distress Syndrome | 1984 |
[Possible mechanism of the therapeutic effect of phentolamine in the adult respiratory distress syndrome--a preliminary study on oleic acid lung preparations].
Topics: Animals; Dogs; Hemodynamics; Oleic Acid; Oleic Acids; Phentolamine; Pulmonary Edema; Respiratory Distress Syndrome; Vascular Resistance | 1984 |
Polymorphonuclear leukocyte participation in acute oleic-acid-induced lung injury.
Topics: Acute Disease; Animals; Body Fluids; Chemotaxis; Male; Neutrophils; Oleic Acid; Oleic Acids; Pulmonary Alveoli; Rats; Rats, Inbred F344; Respiratory Distress Syndrome; Therapeutic Irrigation | 1983 |
Changes in fatty acids in phospholipids of the bronchoalveolar fluid in bacterial pneumonia and in adult respiratory distress syndrome.
Topics: Adolescent; Adult; Aged; Bronchi; Chromatography, Gas; Exudates and Transudates; Fatty Acids; Female; Humans; Male; Middle Aged; Oleic Acid; Oleic Acids; Palmitic Acid; Palmitic Acids; Phospholipids; Pneumonia; Respiratory Distress Syndrome; Therapeutic Irrigation | 1984 |
[The effect of corticosteroids on experimental respiratory distress syndrome using oleic acid].
Topics: Adrenal Cortex Hormones; Animals; Oleic Acid; Oleic Acids; Rabbits; Respiratory Distress Syndrome | 1982 |
Clinical lessons from an experimental model of ARDS.
Topics: Animals; Disease Models, Animal; Lung; Oleic Acid; Oleic Acids; Respiratory Distress Syndrome | 1995 |
Efficacy of expiratory tracheal gas insufflation in a canine model of lung injury.
Topics: Air; Animals; Carbon Dioxide; Disease Models, Animal; Dogs; Hypercapnia; Insufflation; Lung Compliance; Oleic Acid; Oleic Acids; Oxygen; Positive-Pressure Respiration; Pulmonary Alveoli; Pulmonary Gas Exchange; Pulmonary Ventilation; Respiration, Artificial; Respiratory Dead Space; Respiratory Distress Syndrome; Tidal Volume; Trachea; Ventilation-Perfusion Ratio | 1995 |
Volume-controlled inverse ratio ventilation in oleic acid induced lung injury. Effects on gas exchange, hemodynamics, and computed tomographic lung density.
Topics: Animals; Hemodynamics; Lung; Oleic Acid; Oleic Acids; Positive-Pressure Respiration; Pulmonary Gas Exchange; Random Allocation; Respiration, Artificial; Respiratory Distress Syndrome; Swine; Tomography, X-Ray Computed | 1995 |
Effect of intratracheal dexamethasone on oleic acid-induced lung injury in the rat.
Topics: Animals; Bronchoalveolar Lavage Fluid; Dexamethasone; Lung Compliance; Lymphocyte Count; Male; Oleic Acid; Oleic Acids; Proteins; Rats; Rats, Inbred F344; Respiratory Distress Syndrome; Trachea | 1994 |
Ventilation-perfusion inequality and diffusion impairment in acutely injured lungs.
Topics: Animals; Cardiac Output; Dogs; Extravascular Lung Water; Female; Injections, Intravenous; Male; Mathematics; Noble Gases; Oleic Acid; Oleic Acids; Pulmonary Diffusing Capacity; Respiratory Distress Syndrome; Ventilation-Perfusion Ratio | 1994 |
Segmental pulmonary vascular resistances during oleic acid lung injury in rabbits.
Topics: Animals; Blood Pressure; Extravascular Lung Water; Injections, Intravenous; Lung; Oleic Acid; Oleic Acids; Pulmonary Circulation; Pulmonary Edema; Rabbits; Respiratory Distress Syndrome; Vascular Resistance | 1994 |
[Protective effect of putrescine on oleic acid-induced respiratory distress syndrome (RDS)].
Topics: Animals; Lung; Male; Malondialdehyde; Oleic Acid; Oleic Acids; Organ Size; Putrescine; Rats; Rats, Wistar; Respiratory Distress Syndrome | 1994 |
Effect of tracheal gas insufflation on gas exchange in canine oleic acid-induced lung injury.
Topics: Animals; Dogs; Functional Residual Capacity; Hemodynamics; Lung Volume Measurements; Oleic Acid; Oleic Acids; Positive-Pressure Respiration; Prospective Studies; Pulmonary Gas Exchange; Pulmonary Wedge Pressure; Respiration, Artificial; Respiratory Dead Space; Respiratory Distress Syndrome; Trachea | 1995 |
Pentoxifylline prevents a decrease in arterial oxygen tension in oleic acid-induced lung injury.
Topics: Airway Resistance; Animals; Blood Pressure; Capillary Permeability; Carbon Dioxide; Guinea Pigs; Hydrogen-Ion Concentration; Hypoxia; Oleic Acid; Oleic Acids; Oxygen; Pentoxifylline; Prospective Studies; Pulmonary Circulation; Respiratory Distress Syndrome; Theophylline | 1995 |
Protective effect of cobra venom factor on pulmonary injury induced by oleic acid.
Topics: Animals; Complement System Proteins; Dogs; Elapid Venoms; Oleic Acid; Oleic Acids; Respiratory Distress Syndrome; Respiratory Function Tests | 1994 |
Continuous positive airway pressure modulates effect of inhaled nitric oxide on the ventilation-perfusion distributions in canine lung injury.
Topics: Administration, Inhalation; Analysis of Variance; Animals; Blood Gas Analysis; Dogs; Hemodynamics; Linear Models; Nitric Oxide; Oleic Acid; Oleic Acids; Positive-Pressure Respiration; Prospective Studies; Random Allocation; Respiratory Distress Syndrome; Ventilation-Perfusion Ratio | 1994 |
Effect of endogenous and inhaled nitric oxide on the ventilation-perfusion relationships in oleic-acid lung injury.
Topics: Animals; Arginine; Dogs; Female; Male; Nitric Oxide; Oleic Acid; Oleic Acids; omega-N-Methylarginine; Respiratory Distress Syndrome; Ventilation-Perfusion Ratio | 1994 |
Regulation of blood flow in pulmonary microcirculation by vasoactive arachidonic acid metabolites--analysis in acute lung injury.
Topics: Animals; Arachidonic Acids; Disease Models, Animal; Dogs; Embolism, Fat; Epoprostenol; Female; Hypoxia; Indomethacin; Lung; Lung Injury; Male; Methacrylates; Microcirculation; Oleic Acid; Oleic Acids; Pulmonary Circulation; Pulmonary Embolism; Respiratory Distress Syndrome; Thromboxane A2; Vasoconstriction; Vasodilation | 1994 |
Effects of progressive intratracheal administration of perflubron during conventional gas ventilation in anesthetized dogs with oleic acid lung injury.
Topics: Anesthesia; Animals; Disease Models, Animal; Dogs; Drug Evaluation, Preclinical; Female; Fluorocarbons; Hemodynamics; Hydrocarbons, Brominated; Lung; Lung Injury; Male; Oleic Acid; Oleic Acids; Pulmonary Gas Exchange; Respiration, Artificial; Respiratory Distress Syndrome; Respiratory Mechanics; Trachea | 1994 |
A functional and morphologic analysis of pressure-controlled inverse ratio ventilation in oleic acid-induced lung injury.
Topics: Analysis of Variance; Animals; Disease Models, Animal; Hemodynamics; Oleic Acid; Oleic Acids; Positive-Pressure Respiration; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Respiratory Mechanics; Swine; Tomography, X-Ray Computed | 1994 |
Efficacy of inhaled nitric oxide in a porcine model of adult respiratory distress syndrome.
Topics: Administration, Inhalation; Animals; Blood Pressure; Dose-Response Relationship, Drug; Extravascular Lung Water; Hemoglobins; Hypertension, Pulmonary; Lung Compliance; Methemoglobin; Nebulizers and Vaporizers; Nitrates; Nitric Oxide; Nitrites; Oleic Acid; Oleic Acids; Oxygen; Pulmonary Artery; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Swine | 1994 |
Effect of phenytoin on acute lung injuries in unanesthetized sheep.
Topics: Animals; Embolism, Air; Endotoxins; Female; Injections, Intravenous; Lung; Lymph; Oleic Acid; Oleic Acids; Phenytoin; Respiratory Distress Syndrome; Sheep | 1993 |
[Albumin and fibronectin dynamics in an experimental adult respiratory distress syndrome model].
Topics: Animals; Bronchoalveolar Lavage Fluid; Disease Models, Animal; Dogs; Fibronectins; Oleic Acid; Oleic Acids; Respiratory Distress Syndrome; Serum Albumin | 1993 |
Oxygen consumption calculated from the Fick equation has limited utility.
Topics: Animals; Cardiac Output; Cardiac Output, Low; Oleic Acid; Oleic Acids; Oxygen; Oxygen Consumption; Propanolamines; Respiratory Distress Syndrome; Spirometry; Swine; Swine, Miniature; Thermodilution | 1996 |
Pathogenesis of oleic acid-induced lung injury in the rat: distribution of oleic acid during injury and early endothelial cell changes.
Topics: Animals; Carbon Radioisotopes; Cells, Cultured; Disease Models, Animal; Endothelium, Vascular; Fatty Acids; Liver; Lung; Microscopy, Electron; Oleic Acid; Oleic Acids; Pulmonary Alveoli; Rats; Rats, Sprague-Dawley; Respiratory Distress Syndrome | 1995 |
A stable model of respiratory distress by small injections of oleic acid in pigs.
Topics: Animals; Blood Gas Analysis; Dextrans; Disease Models, Animal; Hemodynamics; Injections; Lung Volume Measurements; Oleic Acid; Oleic Acids; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Swine | 1996 |
Tranexamic acid attenuates oleic-acid-induced pulmonary extravasation.
Topics: Analysis of Variance; Animals; Capillary Permeability; Diphenhydramine; Disease Models, Animal; Dose-Response Relationship, Drug; Drug Synergism; Fibrinolysin; Fibrinolysis; Guinea Pigs; Oleic Acid; Oleic Acids; Partial Pressure; Prospective Studies; Pulmonary Circulation; Pulmonary Edema; Respiratory Distress Syndrome; Statistics, Nonparametric; Tranexamic Acid | 1995 |
Influence of prone position on the extent and distribution of lung injury in a high tidal volume oleic acid model of acute respiratory distress syndrome.
Topics: Animals; Disease Models, Animal; Dogs; Female; Lung; Male; Oleic Acid; Positive-Pressure Respiration; Prone Position; Pulmonary Circulation; Pulmonary Gas Exchange; Respiration, Artificial; Respiratory Distress Syndrome; Supine Position; Tidal Volume | 1997 |
Efficacy of inhaled nitric oxide in oleic acid-induced acute lung injury.
Topics: Administration, Inhalation; Animals; Disease Models, Animal; Hypertension, Pulmonary; Nitric Oxide; Oleic Acid; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Swine; Vasodilator Agents | 1997 |
EITS changes following oleic acid induced lung water.
Topics: Animals; Body Water; Electric Impedance; Goats; Humans; In Vitro Techniques; Lung; Models, Biological; Oleic Acid; Pulmonary Edema; Respiratory Distress Syndrome; Swine; Tomography; Ventricular Dysfunction, Left | 1996 |
Vagal and sympathetic denervation in the development of oleic acid-induced pulmonary edema.
Topics: Animals; Blood Pressure; Denervation; Disease Models, Animal; Dogs; Extravascular Lung Water; Female; Hemodynamics; Lung; Male; Oleic Acid; Oxygen Consumption; Pulmonary Circulation; Pulmonary Edema; Respiratory Distress Syndrome; Sympathetic Nervous System; Vagotomy; Vagus Nerve | 1997 |
Protective effect of interleukin-1 receptor antagonist on oleic acid-induced lung injury.
Topics: Animals; Bronchoalveolar Lavage Fluid; Interleukin 1 Receptor Antagonist Protein; Interleukin-1; Lung; Male; Mice; Mice, Inbred BALB C; Nitric Oxide; Nitric Oxide Synthase; Oleic Acid; Receptors, Interleukin-1; Respiratory Distress Syndrome; Sialoglycoproteins | 1996 |
Postinjury thromboxane receptor blockade ameliorates acute lung injury.
Topics: Animals; Bacterial Infections; Blood Pressure; Capillary Permeability; Disease Models, Animal; Ethanol; Fibrinolytic Agents; Hypertension, Pulmonary; Infusions, Intravenous; Microcirculation; Oleic Acid; Oxygen; Pulmonary Artery; Pulmonary Circulation; Rabbits; Receptors, Thromboxane; Respiratory Distress Syndrome; Thromboxane A2; Tidal Volume; Time Factors; Ventilation-Perfusion Ratio | 1997 |
Effects of inhaled nitric oxide and extracorporeal membrane oxygenation on pulmonary hemodynamics and lymph flow in oleic acid lung injury in sheep.
Topics: Administration, Inhalation; Animals; Extracorporeal Membrane Oxygenation; Female; Hemodynamics; Hypertension, Pulmonary; Lymph; Nitric Oxide; Oleic Acid; Prospective Studies; Respiratory Distress Syndrome; Sheep | 1997 |
Pulmonary epithelial permeability and gas exchange: a comparison of inverse ratio ventilation and conventional mechanical ventilation in oleic acid-induced lung injury in rabbits.
Topics: Acute Disease; Animals; Blood Pressure; Disease Models, Animal; Epithelium; Half-Life; Heart Rate; Humans; Injections, Intravenous; Lung; Metabolic Clearance Rate; Oleic Acid; Oxygen; Permeability; Positive-Pressure Respiration; Pressure; Pulmonary Alveoli; Pulmonary Gas Exchange; Rabbits; Radionuclide Imaging; Radiopharmaceuticals; Random Allocation; Respiration, Artificial; Respiratory Distress Syndrome; Respiratory Insufficiency; Respiratory Mechanics; Technetium Tc 99m Pentetate; Ventilation-Perfusion Ratio | 1998 |
Nitric oxide potentiates acute lung injury in an isolated rabbit lung model.
Topics: Animals; Blood Pressure; Disease Models, Animal; Ethanol; Hypertension, Pulmonary; Lung; Lung Compliance; Nitric Oxide; Oleic Acid; Organ Size; Oxygen; Oxygen Consumption; Pulmonary Artery; Pulmonary Edema; Pulmonary Veins; Rabbits; Random Allocation; Respiratory Distress Syndrome; Sodium Chloride; Solvents; Vascular Resistance | 1998 |
A comparison among animal models of acute lung injury.
Topics: Animals; Disease Models, Animal; Endotoxins; Escherichia coli; Hemodynamics; Hydrochloric Acid; Oleic Acid; Pharmaceutic Aids; Respiratory Distress Syndrome; Swine; Therapeutic Irrigation; Tumor Necrosis Factor-alpha | 1998 |
Regional measurements of pulmonary edema by using magnetic resonance imaging.
Topics: Algorithms; Animals; Body Water; Capillary Permeability; Dogs; Lung; Magnetic Resonance Imaging; Microspheres; Oleic Acid; Pulmonary Edema; Respiratory Distress Syndrome | 1998 |
Synergistic hemodynamic effects of low-dose endotoxin and acute lung injury.
Topics: 6-Ketoprostaglandin F1 alpha; Animals; Blood Pressure; Cardiac Output; Cyclooxygenase Inhibitors; Dogs; Endotoxins; Extravascular Lung Water; Hemodynamics; Lung; Meclofenamic Acid; Oleic Acid; Pulmonary Circulation; Respiratory Distress Syndrome; Thromboxane B2; Tomography, Emission-Computed | 1998 |
Combined surfactant therapy and inhaled nitric oxide in rabbits with oleic acid-induced acute respiratory distress syndrome.
Topics: Administration, Inhalation; Animals; Disease Models, Animal; Drug Synergism; Drug Therapy, Combination; Nitric Oxide; Oleic Acid; Organ Size; Pulmonary Surfactants; Rabbits; Respiratory Distress Syndrome; Respiratory Function Tests | 1998 |
Activation of polymorphonuclear leukocytes in oleic acid-induced lung injury.
Topics: Acetylcysteine; Amino Acid Chloromethyl Ketones; Animals; Capillary Permeability; Disease Models, Animal; Drug Evaluation, Preclinical; Female; Free Radical Scavengers; Guinea Pigs; Leukocyte Elastase; Male; Neutrophils; Oleic Acid; Prospective Studies; Pulmonary Circulation; Rats; Respiratory Distress Syndrome; Serine Proteinase Inhibitors; Superoxides | 1998 |
Treatment of pulmonary hypertension and hypoxia due to oleic acid induced lung injury with intratracheal prostaglandin E1 during partial liquid ventilation.
Topics: Animals; Fluorocarbons; Hemodynamics; Hypertension, Pulmonary; Hypoxia; Lung Compliance; Oleic Acid; Prostaglandins E; Pulmonary Circulation; Pulmonary Ventilation; Rabbits; Respiratory Distress Syndrome | 1998 |
Severe respiratory distress following sodium oleate ingestion.
Topics: Adult; Ampicillin; Anti-Inflammatory Agents; Cefotiam; Cephalosporins; Combined Modality Therapy; Female; High-Frequency Jet Ventilation; Humans; Lung; Methylprednisolone; Oleic Acid; Penicillins; Positive-Pressure Respiration; Respiratory Distress Syndrome; Treatment Outcome | 1998 |
Aerosolized soluble nitric oxide donor improves oxygenation and pulmonary hypertension in acute lung injury.
Topics: Administration, Inhalation; Aerosols; Amino Acids, Diamino; Animals; Cardiac Catheterization; Cardiac Output; Catheterization, Swan-Ganz; Disease Models, Animal; Hypertension, Pulmonary; Injections, Intravenous; Lung; Male; Methemoglobin; Nebulizers and Vaporizers; Nitrates; Nitric Oxide; Nitric Oxide Donors; Nitrites; Oleic Acid; Oxygen Consumption; Pulmonary Gas Exchange; Random Allocation; Respiratory Distress Syndrome; Solubility; Swine; Vascular Resistance; Vasodilator Agents; Ventilation-Perfusion Ratio | 1998 |
Effect of different pressure levels on the dynamics of lung collapse and recruitment in oleic-acid-induced lung injury.
Topics: Analysis of Variance; Animals; Disease Models, Animal; Image Processing, Computer-Assisted; Inspiratory Capacity; Lung; Oleic Acid; Positive-Pressure Respiration; Pressure; Pulmonary Atelectasis; Pulmonary Gas Exchange; Pulmonary Ventilation; Respiration; Respiratory Distress Syndrome; Swine; Tidal Volume; Time Factors; Tomography, X-Ray Computed; Ventilation-Perfusion Ratio | 1998 |
Response to inhaled nitric oxide in acute lung injury depends on distribution of pulmonary blood flow prior to its administration.
Topics: 6-Ketoprostaglandin F1 alpha; Administration, Inhalation; Animals; Blood Gas Analysis; Bronchodilator Agents; Cardiac Output; Disease Models, Animal; Dogs; Lung; Nitric Oxide; Oleic Acid; Pulmonary Wedge Pressure; Regional Blood Flow; Respiratory Distress Syndrome; Thromboxane B2; Tomography, Emission-Computed | 1999 |
Efficacy of tracheal gas insufflation in spontaneously breathing sheep with lung injury.
Topics: Animals; Catheterization; Gases; Insufflation; Maximal Voluntary Ventilation; Oleic Acid; Positive-Pressure Respiration; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Respiratory Mechanics; Sheep; Trachea; Work of Breathing | 1999 |
Continuous dose furosemide as a therapeutic approach to acute respiratory distress syndrome (ARDS).
Topics: Animals; Disease Models, Animal; Diuretics; Dogs; Furosemide; Hemodynamics; Humans; Lung; Lung Injury; Oleic Acid; Pulmonary Circulation; Pulmonary Gas Exchange; Respiratory Distress Syndrome | 1999 |
Novel assessment of acute lung injury by in vivo near-infrared spectroscopy.
Topics: Animals; Disease Models, Animal; Extravascular Lung Water; Hemoglobins; Lung; Male; Oleic Acid; Pulmonary Edema; Rats; Rats, Wistar; Respiratory Distress Syndrome; Spectroscopy, Near-Infrared | 1999 |
Effect of positive end-expiratory pressure on regional lung expansion of oleic acid-injured dogs.
Topics: Animals; Dogs; Lung; Oleic Acid; Positive-Pressure Respiration; Respiratory Distress Syndrome | 1999 |
Inhaled nitric oxide in ARDS: modulator of lung injury?
Topics: Administration, Inhalation; Animals; Drug Evaluation, Preclinical; Humans; In Vitro Techniques; Nitric Oxide; Oleic Acid; Randomized Controlled Trials as Topic; Rats; Respiratory Distress Syndrome; Swine; Vasodilator Agents | 1999 |
Role of cyclooxygenase-2 in oleic acid-induced acute lung injury.
Topics: 6-Ketoprostaglandin F1 alpha; Animals; Cyclooxygenase 2; Cyclooxygenase 2 Inhibitors; Cyclooxygenase Inhibitors; Dogs; Endotoxins; Escherichia coli; Immunoenzyme Techniques; Isoenzymes; Lung; Oleic Acid; Prostaglandin-Endoperoxide Synthases; Pulmonary Circulation; Pyrazoles; Radionuclide Imaging; Respiratory Distress Syndrome; Sulfonamides; Thromboxane B2 | 1999 |
Crucial role of group IIA phospholipase A(2) in oleic acid-induced acute lung injury in rabbits.
Topics: Acetates; Animals; Bronchoalveolar Lavage Fluid; Capillary Permeability; Dose-Response Relationship, Drug; Enzyme Inhibitors; Extravascular Lung Water; Group II Phospholipases A2; Indoles; Interleukin-8; Keto Acids; Leukotriene B4; Lung; Lung Compliance; Male; Oleic Acid; Oxygen; Phospholipases A; Phospholipids; Pulmonary Edema; Rabbits; Respiratory Distress Syndrome; Thromboxane A2 | 1999 |
Sodium nitroprusside mitigates oleic acid-induced acute lung injury.
Topics: Animals; Blood Pressure; Capillary Permeability; Carbon Dioxide; Disease Models, Animal; Humans; Hypertension, Pulmonary; Lung Compliance; Microcirculation; Nitroprusside; Oleic Acid; Organ Size; Oxygen; Pulmonary Artery; Pulmonary Circulation; Pulmonary Edema; Pulmonary Gas Exchange; Rabbits; Respiratory Distress Syndrome; Vascular Resistance; Vasodilator Agents | 2000 |
[Comparison of the effects of inhaled nitric oxide and intravasculare regitine on pulmonary gas exchange in young dogs with oleic-acid acute lung injury].
Topics: Animals; Antihypertensive Agents; Bronchodilator Agents; Dogs; Female; Infusions, Intravenous; Male; Nitric Oxide; Oleic Acid; Phentolamine; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Ventilation-Perfusion Ratio | 1998 |
Prone positioning attenuates and redistributes ventilator-induced lung injury in dogs.
Topics: Airway Resistance; Animals; Disease Models, Animal; Dogs; Female; Male; Oleic Acid; Organ Size; Positive-Pressure Respiration; Positive-Pressure Respiration, Intrinsic; Pressure; Prone Position; Random Allocation; Respiratory Distress Syndrome; Severity of Illness Index; Supine Position; Tidal Volume | 2000 |
Low molecular weight dextran attenuates increase in extravascular lung water caused by ARDS.
Topics: Albumins; Animals; Anticoagulants; Blood Gas Analysis; Bronchoalveolar Lavage Fluid; Dextrans; Disease Models, Animal; Drug Evaluation, Preclinical; Extravascular Lung Water; Hematocrit; Hemodynamics; Male; Oleic Acid; Organ Size; Plasma Substitutes; Random Allocation; Rats; Rats, Sprague-Dawley; Respiratory Distress Syndrome | 2000 |
Recruitment maneuvers in three experimental models of acute lung injury. Effect on lung volume and gas exchange.
Topics: Animals; Disease Models, Animal; Dogs; Functional Residual Capacity; Hemodynamics; Lung Volume Measurements; Oleic Acid; Oxygen; Pneumonia, Bacterial; Positive-Pressure Respiration; Pulmonary Gas Exchange; Respiration, Artificial; Respiratory Distress Syndrome; Sodium Chloride; Tidal Volume | 2000 |
Effects of inverse ratio ventilation and positive end-expiratory pressure in oleic acid-induced lung injury.
Topics: Animals; Hemodynamics; Lung; Oleic Acid; Oxygen; Positive-Pressure Respiration; Pulmonary Circulation; Pulmonary Gas Exchange; Radiography; Radionuclide Imaging; Respiration, Artificial; Respiratory Distress Syndrome; Swine; Ventilation-Perfusion Ratio | 2000 |
Biologic variability in mechanical ventilation rate and tidal volume does not improve oxygenation or lung mechanics in canine oleic acid lung injury.
Topics: Animals; Dogs; Hemodynamics; Humans; Lung Compliance; Middle Aged; Oleic Acid; Oxygen; Positive-Pressure Respiration; Pulmonary Alveoli; Pulmonary Atelectasis; Pulmonary Gas Exchange; Respiration, Artificial; Respiratory Distress Syndrome; Respiratory Mechanics; Tidal Volume | 2000 |
Oxygenation response to a recruitment maneuver during supine and prone positions in an oleic acid-induced lung injury model.
Topics: Animals; Dogs; Female; Lung; Lung Volume Measurements; Male; Oleic Acid; Oxygen; Positive-Pressure Respiration; Prone Position; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Supine Position | 2000 |
Oxidant stress and essential fatty acids in patients with risk and established ARDS.
Topics: alpha-Linolenic Acid; Arachidonic Acid; Docosahexaenoic Acids; Eicosapentaenoic Acid; Fatty Acids, Essential; gamma-Linolenic Acid; Humans; Linoleic Acid; Lipid Peroxidation; Malondialdehyde; Nitric Oxide; Nitrites; Oleic Acid; Oxidative Stress; Respiratory Distress Syndrome; Risk Factors; Thiobarbituric Acid Reactive Substances | 2000 |
Biologically variable ventilation increases arterial oxygenation over that seen with positive end-expiratory pressure alone in a porcine model of acute respiratory distress syndrome.
Topics: Analysis of Variance; Animals; Blood Gas Analysis; Cardiotonic Agents; Disease Models, Animal; Dopamine; Hemodynamics; Oleic Acid; Oxygen; Positive-Pressure Respiration; Pulmonary Gas Exchange; Respiration, Artificial; Respiratory Distress Syndrome; Swine; Tidal Volume | 2000 |
Soluble nitric oxide donor and surfactant improve oxygenation and pulmonary hypertension in porcine lung injury.
Topics: Amino Acids, Diamino; Animals; Aorta; Disease Models, Animal; Drug Synergism; Hemodynamics; Hypertension, Pulmonary; In Vitro Techniques; Lung; Male; Methemoglobin; Muscle, Smooth, Vascular; Nitric Oxide; Nitric Oxide Donors; Oleic Acid; Penicillamine; Pulmonary Gas Exchange; Pulmonary Surfactants; Random Allocation; Rats; Respiratory Distress Syndrome; S-Nitroso-N-Acetylpenicillamine; Swine | 2000 |
Continuous versus pulsatile pulmonary hemodynamics in canine oleic acid lung injury.
Topics: Animals; Disease Models, Animal; Dogs; Hemodynamics; Hypertension, Pulmonary; Lung; Oleic Acid; Pulsatile Flow; Respiratory Distress Syndrome; Vascular Resistance; Ventricular Function, Right | 2000 |
Lung function, permeability, and surfactant composition in oleic acid-induced acute lung injury in rats.
Topics: Albumins; Animals; Blood Gas Analysis; Body Fluid Compartments; Bronchoalveolar Lavage Fluid; Capillary Permeability; Iodine Radioisotopes; Leukocyte Count; Lung Compliance; Lysophosphatidylcholines; Macrophages, Alveolar; Male; Oleic Acid; Organ Size; Pneumonia; Pulmonary Alveoli; Rats; Rats, Inbred Strains; Respiratory Distress Syndrome; Surface-Active Agents | 2000 |
Mixed endothelin ET(A) and ET(B) antagonist bosentan inhibits oleic acid-induced lung plasma extravasation in mouse.
Topics: Animals; Bosentan; Capillary Permeability; Dose-Response Relationship, Drug; Endothelin Receptor Antagonists; Endothelins; Evans Blue; Male; Mice; Oleic Acid; Receptor, Endothelin A; Receptor, Endothelin B; Respiratory Distress Syndrome; Sulfonamides | 2000 |
The role of the pulmonary afferent receptors in producing hemodynamic changes during hyperinflation and endotracheal suctioning in an oleic acid-injured animal model of acute respiratory failure.
Topics: Afferent Pathways; Animals; Disease Models, Animal; Dogs; Hemodynamics; Insufflation; Intubation, Intratracheal; Lung; Monitoring, Physiologic; Nerve Fibers; Oleic Acid; Respiratory Distress Syndrome; Suction; Vagotomy; Vagus Nerve | 2000 |
[Changes of thromboxane A2 receptors and their mRNA expression and effects of their antagonist phenol red in the lung of acute lung injury of rats].
Topics: Animals; Female; Lung; Male; Oleic Acid; Phenolsulfonphthalein; Random Allocation; Rats; Rats, Wistar; Receptors, Thromboxane; Respiratory Distress Syndrome; RNA, Messenger | 1998 |
Abdomen release in prone position does not improve oxygenation in an experimental model of acute lung injury.
Topics: Animals; Blood Gas Analysis; Disease Models, Animal; Extravascular Lung Water; Hemodynamics; Lung Compliance; Oleic Acid; Prone Position; Pulmonary Edema; Pulmonary Gas Exchange; Random Allocation; Respiratory Distress Syndrome; Respiratory Mechanics; Swine; Treatment Outcome | 2001 |
Therapeutic time-window of a group IIA phospholipase A2 inhibitor in rabbit acute lung injury: correlation with lung surfactant protection.
Topics: Acetates; Animals; Blood Gas Analysis; Bronchoalveolar Lavage Fluid; Enzyme Inhibitors; Group II Phospholipases A2; Indoles; Keto Acids; Male; Oleic Acid; Phospholipases A; Phospholipases A2; Pulmonary Surfactants; Rabbits; Respiratory Distress Syndrome | 2001 |
Oleic acid-induced lung injury: thin-section CT evaluation in dogs.
Topics: Animals; Capillary Permeability; Dogs; Extravascular Lung Water; Lung; Oleic Acid; Pulmonary Edema; Respiratory Distress Syndrome; Tomography, X-Ray Computed | 2001 |
Biologic variability in mechanical ventilation in a canine oleic acid lung injury model.
Topics: Animals; Disease Models, Animal; Dogs; Oleic Acid; Respiration, Artificial; Respiratory Distress Syndrome | 2001 |
Effects of inhalation of perfluorocarbon aerosol on oxygenation and pulmonary function compared to PGI2 inhalation in a sheep model of oleic acid-induced lung injury.
Topics: Aerosols; Animals; Disease Models, Animal; Drug Delivery Systems; Epoprostenol; Female; Fluorocarbons; Hemodynamics; Male; Oleic Acid; Positive-Pressure Respiration; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Sheep | 2001 |
Early detection of oleic acid-induced lung injury in rats using (111)In-labeled anti-rat intercellular adhesion molecule-1.
Topics: Animals; Antibodies, Monoclonal; Fluorescent Antibody Technique; Immunoglobulin G; Indium Radioisotopes; Intercellular Adhesion Molecule-1; Lung; Mice; Neutrophils; Oleic Acid; Radionuclide Imaging; Rats; Rats, Inbred F344; Respiratory Distress Syndrome; Serum Albumin; Tissue Distribution | 2001 |
[Experimental study on effect of altitude xishi capsule in treating oleic acid induced lung injury in acute hypoxia rats].
Topics: Animals; Dexamethasone; Disease Models, Animal; Drug Combinations; Hypoxia; Male; Nifedipine; Oleic Acid; Panax; Plants, Medicinal; Rats; Rats, Wistar; Respiratory Distress Syndrome | 1998 |
FiO2 and positive end-expiratory pressure as compensation for altitude-induced hypoxemia in an acute respiratory distress syndrome model: implications for air transportation of critically ill patients.
Topics: Air Ambulances; Altitude; Animals; Blood Gas Analysis; Critical Care; Hypoxia; Male; Models, Biological; Oleic Acid; Oxygen; Positive-Pressure Respiration; Respiratory Distress Syndrome; Swine, Miniature | 2001 |
Effects of vaporized perfluorocarbon on pulmonary blood flow and ventilation/perfusion distribution in a model of acute respiratory distress syndrome.
Topics: Algorithms; Animals; Fluorocarbons; Hemodynamics; Noble Gases; Oleic Acid; Positive-Pressure Respiration; Pulmonary Circulation; Pulmonary Gas Exchange; Respiration, Artificial; Respiratory Distress Syndrome; Sheep; Ventilation-Perfusion Ratio | 2001 |
Effect of methylprednisolone on phospholipase A(2) activity and lung surfactant degradation in acute lung injury in rabbits.
Topics: Animals; Bronchoalveolar Lavage Fluid; Capillary Permeability; Eicosanoids; Interleukin-8; Lung; Male; Methylprednisolone; Oleic Acid; Phospholipases A; Pulmonary Surfactants; Rabbits; Respiratory Distress Syndrome | 2001 |
Effects of mannitol on the acute lung injury induced by oleic acid in rats.
Topics: Animals; Diuretics; Diuretics, Osmotic; Furosemide; Humans; Hypertonic Solutions; Infusions, Intravenous; Lung; Lung Injury; Male; Mannitol; Oleic Acid; Pulmonary Edema; Rats; Rats, Wistar; Respiratory Distress Syndrome | 2001 |
Importance of hypoxic vasoconstriction in maintaining oxygenation during acute lung injury.
Topics: Animals; Dogs; Hypertension, Pulmonary; Hypoxia; Oleic Acid; Pulmonary Circulation; Respiratory Distress Syndrome; Vascular Resistance; Vasoconstriction | 2002 |
Changes in pulmonary function and oxygenation during application of perfluorocarbon vapor in healthy and oleic acid-injured animals.
Topics: Administration, Inhalation; Animals; Female; Fluorocarbons; Hemodynamics; Lung; Oleic Acid; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Sheep | 2002 |
Pulmonary injury in acute experimental pancreatitis correlates with elevated levels of free fatty acids in rats.
Topics: Acute Disease; Amylases; Analysis of Variance; Animals; Fatty Acids, Nonesterified; Glycodeoxycholic Acid; Lung; Male; Oleic Acid; Oleic Acids; Organ Size; Oxygen; Pancreas; Pancreatitis; Rats; Rats, Sprague-Dawley; Respiratory Distress Syndrome | 1992 |
Attenuation of hypoxic pulmonary vasoconstriction in acute oleic acid lung injury--significance of vasodilator prostanoids.
Topics: Animals; Disease Models, Animal; Dogs; Female; Lung; Lung Injury; Male; Oleic Acid; Oleic Acids; Prostaglandins; Pulmonary Circulation; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Vasoconstriction; Vasodilation | 1992 |
Estimation of respiratory mechanics in dogs with acute lung injury.
Topics: Animals; Disease Models, Animal; Dogs; Evaluation Studies as Topic; Female; Functional Residual Capacity; Hemodynamics; Lung; Lung Injury; Male; Oleic Acid; Oleic Acids; Oxygen; Respiratory Distress Syndrome; Respiratory Function Tests; Respiratory Mechanics | 1992 |
Fibrinolytic activity in bronchoalveolar lavage of baboons with diffuse alveolar damage: trends in two forms of lung injury.
Topics: alpha-2-Antiplasmin; Animals; Bronchoalveolar Lavage Fluid; Bronchoscopy; Disease Models, Animal; Evaluation Studies as Topic; Fibrin; Fibrinolysis; Immunohistochemistry; Metabolic Clearance Rate; Oleic Acid; Oleic Acids; Oxygen; Papio; Plasminogen; Plasminogen Activator Inhibitor 1; Plasminogen Activator Inhibitor 2; Pseudomonas aeruginosa; Pulmonary Fibrosis; Respiratory Distress Syndrome; Tissue Plasminogen Activator; Urokinase-Type Plasminogen Activator | 1992 |
A comparison of continuous positive pressure ventilation, combined high frequency ventilation and airway pressure release ventilation on experimental lung injury.
Topics: Animals; Hemodynamics; High-Frequency Ventilation; Intermittent Positive-Pressure Ventilation; Oleic Acid; Oleic Acids; Oxygen; Positive-Pressure Respiration; Pulmonary Artery; Pulmonary Gas Exchange; Random Allocation; Respiratory Distress Syndrome; Swine | 1992 |
Almitrine and doxapram in experimental lung injury.
Topics: Almitrine; Animals; Dogs; Doxapram; Oleic Acid; Oleic Acids; Pulmonary Circulation; Pulmonary Edema; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Vasoconstriction | 1992 |
Release of endothelin in the oleic acid-induced respiratory distress syndrome in rats.
Topics: Animals; Bronchoalveolar Lavage Fluid; Chromatography, High Pressure Liquid; Disease Models, Animal; Endothelins; Male; Oleic Acid; Oleic Acids; Radioimmunoassay; Rats; Rats, Inbred Strains; Respiratory Distress Syndrome; Serum Albumin, Bovine; Time Factors | 1992 |
Sequential changes of perivascular edema cuffs in models of permeability and hemodynamic pulmonary edema.
Topics: Animals; Capillary Permeability; Epinephrine; Extravascular Lung Water; Hemodynamics; Lung; Oleic Acid; Oleic Acids; Pulmonary Edema; Rats; Rats, Inbred Strains; Respiratory Distress Syndrome | 1991 |
Stable and reproducible porcine model of acute lung injury induced by oleic acid.
Topics: Animals; Computers; Hemodynamics; Infusions, Intravenous; Models, Biological; Monitoring, Physiologic; Oleic Acid; Oleic Acids; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Swine | 1991 |
The effect of prostaglandin E1 on acute pulmonary artery hypertension during oleic acid-induced respiratory dysfunction.
Topics: Acute Disease; Alprostadil; Animals; Blood Pressure; Hypertension, Pulmonary; Oleic Acid; Oleic Acids; Oxygen; Pulmonary Artery; Respiratory Distress Syndrome; Swine; Ventricular Function, Right | 1991 |
High-frequency oscillation during simulated altitude exposure.
Topics: Altitude; Animals; Atmospheric Pressure; Cardiac Output; Dogs; Functional Residual Capacity; High-Frequency Ventilation; Male; Oleic Acid; Oleic Acids; Oxygen; Partial Pressure; Pulmonary Gas Exchange; Respiratory Distress Syndrome; Tidal Volume | 1990 |
Local and global function of the right ventricle in a canine model of pulmonary microembolism and oleic acid edema: influence of ventilation with PEEP.
Topics: Animals; Dogs; Female; Hemodynamics; Male; Myocardial Contraction; Oleic Acid; Oleic Acids; Positive-Pressure Respiration; Pulmonary Circulation; Pulmonary Edema; Pulmonary Embolism; Respiratory Distress Syndrome; Respiratory Mechanics; Ventricular Function, Right | 1990 |
Association of changes in lysophosphatidylcholine metabolism and in microsomal membrane lipid composition to the pulmonary injury induced by oleic acid.
Topics: 1-Acylglycerophosphocholine O-Acyltransferase; Animals; Diglycerides; Glycerophosphates; Intracellular Membranes; Lysophosphatidylcholines; Male; Membrane Fluidity; Membrane Lipids; Microsomes; Oleic Acid; Oleic Acids; Phosphatidylcholines; Phospholipases A; Phospholipids; Rabbits; Respiratory Distress Syndrome; Triglycerides | 1990 |
The effect of hypopnea on low-pressure pulmonary edema.
Topics: Animals; Dogs; Extracorporeal Membrane Oxygenation; Male; Oleic Acid; Oleic Acids; Pulmonary Edema; Respiration; Respiration, Artificial; Respiratory Distress Syndrome; Tidal Volume | 1990 |
A new experimental model of ARDS and pulmonary hypertension in the dog.
Topics: Animals; Dextrans; Disease Models, Animal; Dogs; Female; Glass; Hemodynamics; Hypertension, Pulmonary; Lung; Male; Oleic Acid; Oleic Acids; Pulmonary Edema; Respiratory Distress Syndrome; Respiratory Function Tests | 1989 |
Comparison between intra- and extracellular surfactant in respiratory distress induced by oleic acid.
Topics: Animals; Bronchoalveolar Lavage Fluid; Inclusion Bodies; Lysophosphatidylcholines; Male; Oleic Acid; Oleic Acids; Phospholipids; Pulmonary Surfactants; Rabbits; Respiratory Distress Syndrome; Sphingomyelins | 1989 |
[Therapeutic effect of anisodamine on acute lung injury induced by oleic acid in dogs].
Topics: Animals; Dogs; Female; Male; Oleic Acid; Oleic Acids; Respiratory Distress Syndrome; Solanaceous Alkaloids | 1989 |
Acute lung injury monitored with radiolabeled transferrin and lung volume measurements.
Topics: Animals; Capillary Permeability; Disease Models, Animal; Indium Radioisotopes; Lung; Lung Volume Measurements; Oleic Acid; Oleic Acids; Radionuclide Imaging; Respiratory Distress Syndrome; Terbutaline; Transferrin | 1989 |
[Effect of PGI2 plus ibuprofen on experimental respiratory distress syndrome induced by oleic acid].
Topics: Animals; Epoprostenol; Ibuprofen; Male; Oleic Acid; Oleic Acids; Rabbits; Respiratory Distress Syndrome | 1988 |
Evaluation of (1-sarcosine, 8-isoleucine) angiotensin II as a therapeutic agent for oleic acid-induced pulmonary edema.
Topics: 1-Sarcosine-8-Isoleucine Angiotensin II; Angiotensin II; Animals; Blood Pressure; Carbon Dioxide; Lung; Lung Compliance; Male; Oleic Acid; Oleic Acids; Oxygen; Partial Pressure; Pulmonary Circulation; Pulmonary Edema; Respiratory Distress Syndrome; Sheep; Vascular Resistance | 1986 |
Acute effects of oleic acid-induced lung injury in baboons.
Topics: Animals; Inflammation; Oleic Acid; Oleic Acids; Papio; Pulmonary Alveoli; Respiratory Distress Syndrome; Therapeutic Irrigation | 1986 |
Functional residual capacity as a noninvasive indicator of optimal positive end-expiratory pressure.
Topics: Analysis of Variance; Animals; Carbon Dioxide; Dogs; Functional Residual Capacity; Hemodynamics; Lung Compliance; Lung Volume Measurements; Oleic Acid; Oleic Acids; Oxygen; Positive-Pressure Respiration; Regression Analysis; Respiratory Distress Syndrome | 1988 |
[Dehydration therapy in rabbit models of the respiratory distress syndrome induced by oleic acid].
Topics: Animals; Dehydration; Female; Furosemide; Male; Oleic Acid; Oleic Acids; Rabbits; Respiratory Distress Syndrome | 1988 |
Hemodynamic and pathologic effects of prostacyclin on oleic acid-induced pulmonary injury.
Topics: Animals; Cardiac Output; Dogs; Epoprostenol; Hemodynamics; Hypoxia; Lung; Oleic Acid; Oleic Acids; Oxygen; Respiratory Distress Syndrome; Vascular Resistance | 1988 |
Extravascular lung water measurement in septic sheep.
Topics: Animals; Blood Pressure; Capillary Permeability; Cardiac Output; Dye Dilution Technique; Escherichia coli Infections; Extracellular Space; Lung; Microscopy, Electron, Scanning; Oleic Acid; Oleic Acids; Pulmonary Artery; Pulmonary Edema; Respiratory Distress Syndrome; Sepsis; Sheep; Thermodilution | 1986 |
[Pulmonary surfactant levels in oleic acid-induced respiratory distress syndrome of adult rabbits].
Topics: Animals; Dexamethasone; Female; Lung; Male; Oleic Acid; Oleic Acids; Phosphatidylcholines; Phospholipids; Pulmonary Surfactants; Rabbits; Respiratory Distress Syndrome | 1987 |
Respiratory muscle blood flow in oleic acid-induced pulmonary edema.
Topics: Animals; Blood Gas Analysis; Blood Pressure; Cardiac Output; Dogs; Hypoxia; Muscles; Oleic Acid; Oleic Acids; Oxygen Consumption; Pulmonary Edema; Regional Blood Flow; Respiratory Distress Syndrome; Respiratory System | 1986 |
Effect of furosemide on fully established low pressure pulmonary edema.
Topics: Animals; Dogs; Furosemide; Oleic Acid; Oleic Acids; Pulmonary Edema; Respiratory Distress Syndrome | 1986 |
Indomethacin and dexamethasone decrease oleic acid-induced pulmonary protein leak in rabbits.
Topics: Animals; Dexamethasone; Drug Therapy, Combination; Indomethacin; Oleic Acid; Oleic Acids; Rabbits; Radionuclide Imaging; Respiratory Distress Syndrome; Technetium Tc 99m Aggregated Albumin | 1986 |
Cardiac dysfunction during acute lung injury induced by oleic acid in dogs.
Topics: Acute Disease; Animals; Dogs; Female; Heart Diseases; Heart Function Tests; Heart Ventricles; Hemodynamics; Injections, Intra-Arterial; Lung Diseases; Male; Myocardial Contraction; Myocardium; Oleic Acid; Oleic Acids; Pulmonary Artery; Respiratory Distress Syndrome | 1986 |
Sequential cardiopulmonary changes after oleic-acid injury in dogs.
Topics: Animals; Blood Pressure; Blood Proteins; Cardiac Output; Dogs; Heart Rate; Hematocrit; Hemodynamics; Infusions, Intra-Arterial; Oleic Acid; Oleic Acids; Pulmonary Wedge Pressure; Respiration; Respiratory Distress Syndrome | 1985 |
Effect of vasodilator treatment on the resolution of oleic acid injury in dogs.
Topics: Animals; Constriction, Pathologic; Dogs; Hypoxia; Lung; Minoxidil; Models, Biological; Oleic Acid; Oleic Acids; Pulmonary Circulation; Pyrimidines; Respiratory Distress Syndrome; Vasodilator Agents | 1985 |