Page last updated: 2024-08-21

fluorobenzenes and Malaria

fluorobenzenes has been researched along with Malaria in 22 studies

Research

Studies (22)

TimeframeStudies, this research(%)All Research%
pre-19901 (4.55)18.7374
1990's0 (0.00)18.2507
2000's2 (9.09)29.6817
2010's12 (54.55)24.3611
2020's7 (31.82)2.80

Authors

AuthorsStudies
Hofer, L; Kibondo, UA; Moore, S; Saddler, A; Tambwe, MM1
Finda, MF; Kafwenji, A; Kifungo, K; Mapua, SA; Mmbando, AS; Monroe, AC; Mrosso, PC; Mwanga, EP; Ngowo, HS; Ogoma, SB; Okumu, FO; Stica, C1
Foster Pemba, D; Kambewa, EA; Kawada, H; Nakazawa, S; Ohashi, K; Shimabukuro, K1
Abbasi, S; Finda, MF; Kazimbaya, D; Limwagu, AJ; Lorenz, LM; Mmbando, AS; Moore, SJ; Mponzi, W; Ngowo, HS; Njalambaha, RM; Nyoni, AP; Odufuwa, OG; Okumu, FO; Schellenberg, J; Swai, JK1
Lover, AA; Martin, NJ; Mendenhall, IH; Nam, VS; Phong, TV; Tu, TC1
Achee, NL; Asih, PBS; Baird, JK; Bangs, MJ; Burton, T; Bøgh, C; Collins, F; Eugenio, EC; Grieco, JP; Hendrickson, J; Liu, F; Lobo, NF; Nur Hidayati, AP; Permana, DH; Rozi, IE; Sidik, D; Syafruddin, D; Syahrani, L; Zubaidah, S1
Bangs, MJ; Chareonviriyaphap, T; Hii, J; Muenworn, V; Sukkanon, C; Tisgratog, R1
Fillinger, U; Hiscox, A; Moore, S; Njoroge, MM; Saddler, A; Takken, W; van Loon, JJA1
Champagne, C; Chitnis, N; Denz, A; Fillinger, U; Hiscox, A; Moore, SJ; Njoroge, MM; Okumu, F; Saddler, A; Tambwe, MM; van Loon, JJA1
Horstmann, S; Killeen, GF; Malone, D; Mmando, AS; Ogoma, SB; Swai, JK1
Finda, M; Masalu, JP; Minja, EG; Mmbando, AS; Ogoma, SB; Okumu, FO; Sikulu-Lord, MT1
Charlwood, JD; Lawford, H; Liverani, M; Yeung, S1
Bernier, UR; Cardol, E; Cohnstaedt, LW; D'hers, S; Elman, NM; Gurman, P; Kline, DL; Mudenda, T; Norris, DE; Perry, M; Simubali, L; Stevenson, JC; Thuma, PE; Vazquez, AA1
Batista, EPA; Eiras, AE; Finda, MF; Kaindoa, EW; Kifungo, K; Kilalangongono, M; Mmbando, AS; Mwanga, EP; Ngowo, HS; Njalambaha, RM; Okumu, FO1
Aimufua, OJ; Akinsanya, B; Ejovwoke, YO; Idowu, ET; Otubanjo, OA1
Kilalangongono, M; Kitumbukile, M; Kreppel, K; Lorenz, LM; Maia, MF; Mbeyela, E; Moore, J; Moore, SJ; Mseka, A; Ngonyani, H; Ogoma, SB; Roman, D; Sangusangu, R; Simfukwe, ET1
Maia, MF; Massinda, BM; Mbeyela, EM; Moore, SJ; Tambwe, MM1
Chaki, PP; Govella, NJ; Killeen, G; Ogoma, SB; Paliga, J1
Charlwood, JD; Hemingway, J; Morgan, JC; Nenhep, S; Protopopoff, N; Sovannaroth, S1
Iwasaki, T; Kawada, H; Matsumoto, O; Minjas, JN; Takagi, M; Temu, EA1
Chiwade, T; Lukwa, N1
Hare, JD; Lam, PY; Lipman, D; Tometsko, AM; Tometsko, CR1

Trials

1 trial(s) available for fluorobenzenes and Malaria

ArticleYear
Efficacy of a Spatial Repellent for Control of Malaria in Indonesia: A Cluster-Randomized Controlled Trial.
    The American journal of tropical medicine and hygiene, 2020, Volume: 103, Issue:1

    Topics: Child, Preschool; Cyclopropanes; Double-Blind Method; Female; Fluorobenzenes; Housing; Humans; Indonesia; Infant; Insect Repellents; Insecticides; Malaria; Male; Mosquito Control; Mosquito Vectors

2020

Other Studies

21 other study(ies) available for fluorobenzenes and Malaria

ArticleYear
Transfluthrin eave-positioned targeted insecticide (EPTI) reduces human landing rate (HLR) of pyrethroid resistant and susceptible malaria vectors in a semi-field simulated peridomestic space.
    Malaria journal, 2021, Aug-30, Volume: 20, Issue:1

    Topics: Animals; Anopheles; Cyclopropanes; Female; Fluorobenzenes; Housing; Insect Bites and Stings; Insect Repellents; Insecticide Resistance; Malaria; Mosquito Control; Mosquito Vectors; Pyrethrins

2021
Eave ribbons treated with transfluthrin can protect both users and non-users against malaria vectors.
    Malaria journal, 2019, Sep-18, Volume: 18, Issue:1

    Topics: Adult; Animals; Anopheles; Cyclopropanes; Fluorobenzenes; Humans; Insect Bites and Stings; Insect Repellents; Malaria; Male; Mosquito Control; Mosquito Vectors; Tanzania; Young Adult

2019
Effect of Metofluthrin-Impregnated Spatial Repellent Devices Combined with New Long-Lasting Insecticidal Nets (Olyset
    Japanese journal of infectious diseases, 2020, Mar-24, Volume: 73, Issue:2

    Topics: Animals; Child; Child, Preschool; Cyclopropanes; Female; Fluorobenzenes; Humans; Insect Repellents; Insecticide Resistance; Insecticide-Treated Bednets; Insecticides; Malaria; Malawi; Mosquito Control; Mosquito Vectors; Prevalence; Pyrethrins

2020
Protecting migratory farmers in rural Tanzania using eave ribbons treated with the spatial mosquito repellent, transfluthrin.
    Malaria journal, 2019, Dec-10, Volume: 18, Issue:1

    Topics: Adolescent; Adult; Aged; Aged, 80 and over; Agriculture; Animals; Culicidae; Cyclopropanes; Farmers; Female; Fluorobenzenes; Housing; Humans; Insect Bites and Stings; Insect Repellents; Malaria; Middle Aged; Mosquito Control; Rural Population; Tanzania; Transients and Migrants; Young Adult

2019
The impact of transfluthrin on the spatial repellency of the primary malaria mosquito vectors in Vietnam: Anopheles dirus and Anopheles minimus.
    Malaria journal, 2020, Jan-06, Volume: 19, Issue:1

    Topics: Animals; Anopheles; Cyclopropanes; Feeding Behavior; Female; Fluorobenzenes; Humans; Insect Repellents; Insecticide Resistance; Malaria; Mosquito Control; Mosquito Vectors; Vietnam

2020
Field Evaluation of a Spatial Repellent Emanation Vest for Personal Protection Against Outdoor Biting Mosquitoes.
    Journal of medical entomology, 2021, 03-12, Volume: 58, Issue:2

    Topics: Animals; Anopheles; Culicidae; Cyclopropanes; Fluorobenzenes; Humans; Insect Bites and Stings; Insect Repellents; Malaria; Mosquito Control; Mosquito Vectors; Thailand

2021
Evaluating putative repellent 'push' and attractive 'pull' components for manipulating the odour orientation of host-seeking malaria vectors in the peri-domestic space.
    Parasites & vectors, 2021, Jan-11, Volume: 14, Issue:1

    Topics: Agriculture; Animals; Anopheles; Behavior, Animal; Cyclopropanes; Female; Fluorobenzenes; Housing; Humans; Insect Bites and Stings; Insect Repellents; Malaria; Mosquito Control; Mosquito Vectors; Plant Extracts; Textiles

2021
Predicting the impact of outdoor vector control interventions on malaria transmission intensity from semi-field studies.
    Parasites & vectors, 2021, Jan-20, Volume: 14, Issue:1

    Topics: Animals; Anopheles; Bayes Theorem; Cyclopropanes; Female; Fluorobenzenes; Humans; Insect Bites and Stings; Insect Repellents; Malaria; Models, Theoretical; Mosquito Control; Mosquito Vectors; Odorants

2021
A low technology emanator treated with the volatile pyrethroid transfluthrin confers long term protection against outdoor biting vectors of lymphatic filariasis, arboviruses and malaria.
    PLoS neglected tropical diseases, 2017, Volume: 11, Issue:4

    Topics: Animals; Anopheles; Culex; Cyclopropanes; Elephantiasis, Filarial; Fluorobenzenes; Housing; Humans; Insect Bites and Stings; Insecticides; Malaria; Mosquito Control; Pyrethrins; Tanzania

2017
Efficacy and user acceptability of transfluthrin-treated sisal and hessian decorations for protecting against mosquito bites in outdoor bars.
    Parasites & vectors, 2017, Apr-20, Volume: 10, Issue:1

    Topics: Animals; Anopheles; Cyclopropanes; Fluorobenzenes; Humans; Insect Bites and Stings; Insect Repellents; Malaria; Mosquito Control; Mosquito Vectors; Patient Acceptance of Health Care; Tanzania; Time Factors

2017
Field assessment of a novel spatial repellent for malaria control: a feasibility and acceptability study in Mondulkiri, Cambodia.
    Malaria journal, 2017, 10-13, Volume: 16, Issue:1

    Topics: Cambodia; Cyclopropanes; Family Characteristics; Feasibility Studies; Fluorobenzenes; Humans; Insect Repellents; Malaria; Male; Mosquito Control; Mosquito Vectors; Socioeconomic Factors; Surveys and Questionnaires

2017
Controlled release spatial repellent devices (CRDs) as novel tools against malaria transmission: a semi-field study in Macha, Zambia.
    Malaria journal, 2018, Nov-26, Volume: 17, Issue:1

    Topics: Animals; Anopheles; Cyclopropanes; Diffusion; Disease Transmission, Infectious; Drug Delivery Systems; Feeding Behavior; Female; Fluorobenzenes; Fumigation; Insect Repellents; Malaria; Mosquito Control; Population Density; Survival Analysis; Zambia

2018
Evaluation of a push-pull system consisting of transfluthrin-treated eave ribbons and odour-baited traps for control of indoor- and outdoor-biting malaria vectors.
    Malaria journal, 2019, Mar-20, Volume: 18, Issue:1

    Topics: Animals; Anopheles; Carbon Dioxide; Cyclopropanes; Female; Fluorobenzenes; Humans; Insect Repellents; Malaria; Mosquito Control; Mosquito Vectors; Tanzania

2019
Toxicological effects of prolonged and intense use of mosquito coil emission in rats and its implications on malaria control.
    Revista de biologia tropical, 2013, Volume: 61, Issue:3

    Topics: Allethrins; Animals; Culicidae; Cyclopropanes; Fluorobenzenes; Insecticides; Malaria; Male; Mosquito Control; Mutagenicity Tests; Rats; Smoke; Time Factors

2013
An experimental hut study to quantify the effect of DDT and airborne pyrethroids on entomological parameters of malaria transmission.
    Malaria journal, 2014, Apr-01, Volume: 13

    Topics: Animals; Anopheles; Behavior, Animal; Cyclopropanes; DDT; Feeding Behavior; Fluorobenzenes; Insecticides; Malaria; Mosquito Control; Tanzania

2014
Experimental hut evaluation of linalool spatial repellent agar gel against Anopheles gambiae sensu stricto mosquitoes in a semi-field system in Bagamoyo, Tanzania.
    Parasites & vectors, 2014, Dec-05, Volume: 7

    Topics: Acyclic Monoterpenes; Agar; Animals; Anopheles; Cyclopropanes; Feeding Behavior; Female; Fluorobenzenes; Humans; Insect Repellents; Malaria; Monoterpenes; Tanzania

2014
Impregnating hessian strips with the volatile pyrethroid transfluthrin prevents outdoor exposure to vectors of malaria and lymphatic filariasis in urban Dar es Salaam, Tanzania.
    Parasites & vectors, 2015, Jun-12, Volume: 8

    Topics: Animals; Anopheles; Culex; Cyclopropanes; Elephantiasis, Filarial; Female; Fluorobenzenes; Humans; Insecticides; Malaria; Male; Mosquito Control; Pyrethrins; Tanzania

2015
Effects of the spatial repellent metofluthrin on landing rates of outdoor biting anophelines in Cambodia, Southeast Asia.
    Medical and veterinary entomology, 2016, Volume: 30, Issue:2

    Topics: Animals; Anopheles; Cambodia; Cyclopropanes; Fluorobenzenes; Insect Repellents; Insect Vectors; Malaria; Mosquito Control; Species Specificity

2016
Field evaluation of spatial repellency of metofluthrin-impregnated plastic strips against Anopheles gambiae complex in Bagamoyo, coastal Tanzania.
    Journal of the American Mosquito Control Association, 2008, Volume: 24, Issue:3

    Topics: Animals; Anopheles; Cyclopropanes; Fluorobenzenes; Insect Repellents; Insect Vectors; Malaria; Mosquito Control; Tanzania

2008
Lack of insecticidal effect of mosquito coils containing either metofluthrin or esbiothrin on Anopheles gambiae sensu lato mosquitoes.
    Tropical biomedicine, 2008, Volume: 25, Issue:3

    Topics: Allethrins; Animals; Anopheles; Cyclopropanes; Fluorobenzenes; Insecticides; Malaria; Mosquito Control; Time Factors

2008
Effects of photosensitive chemicals on malaria parasite cells.
    Annals of the New York Academy of Sciences, 1980, Volume: 346

    Topics: Adenosine; Animals; Azides; Dinitrophenols; DNA; Erythrocytes; Fluorobenzenes; Kinetics; Light; Malaria; Mice; Nicotine; Photolysis; Plasmodium; Plasmodium berghei; RNA

1980