Page last updated: 2024-11-04

sodium fluoride and Multiple Myeloma

sodium fluoride has been researched along with Multiple Myeloma in 18 studies

Multiple Myeloma: A malignancy of mature PLASMA CELLS engaging in monoclonal immunoglobulin production. It is characterized by hyperglobulinemia, excess Bence-Jones proteins (free monoclonal IMMUNOGLOBULIN LIGHT CHAINS) in the urine, skeletal destruction, bone pain, and fractures. Other features include ANEMIA; HYPERCALCEMIA; and RENAL INSUFFICIENCY.

Research Excerpts

ExcerptRelevanceReference
"Fifteen patients with multiple myeloma were treated with sodium fluoride (50 mg twice daily) plus calcium carbonate (1 g four times daily) or with the same fluoride-calcium dosage plus vitamin D (50,000 U twice weekly)."9.05Effect of sodium fluoride, calcium carbonate, and vitamin D on the skeleton in multiple myeloma. ( Jowsey, J; Kyle, RA, 1980)
"PET with fluorodeoxyglucose and sodium fluoride (NaF) radiotracers has shown a great promise in assessing patients with multiple myeloma (MM)."9.01Evolving Roles of Fluorodeoxyglucose and Sodium Fluoride in Assessment of Multiple Myeloma Patients: Introducing a Novel Method of PET Quantification to Overcome Shortcomings of the Existing Approaches. ( Alavi, A; Ayubcha, C; Kothekar, E; Raynor, WY; Seraj, SM; Werner, T; Zadeh, MZ, 2019)
"Fifteen patients with multiple myeloma were treated with sodium fluoride (50 mg twice daily) plus calcium carbonate (1 g four times daily) or with the same fluoride-calcium dosage plus vitamin D (50,000 U twice weekly)."5.05Effect of sodium fluoride, calcium carbonate, and vitamin D on the skeleton in multiple myeloma. ( Jowsey, J; Kyle, RA, 1980)
"PET with fluorodeoxyglucose and sodium fluoride (NaF) radiotracers has shown a great promise in assessing patients with multiple myeloma (MM)."5.01Evolving Roles of Fluorodeoxyglucose and Sodium Fluoride in Assessment of Multiple Myeloma Patients: Introducing a Novel Method of PET Quantification to Overcome Shortcomings of the Existing Approaches. ( Alavi, A; Ayubcha, C; Kothekar, E; Raynor, WY; Seraj, SM; Werner, T; Zadeh, MZ, 2019)
" The similarities of primary osteoporosis and osteoporosis in multiple myeloma raised a hope that sodium fluoride will help to prevent or to slow down the osteoporotic process in multiple myeloma patients."4.79[Bone manifestations of multiple myeloma and therapeutic possibilities]. ( Adam, Z; Vorlícek, J, 1994)
"The aim of this prospective study is to evaluate the combined use of fluorine-18 fluorodeoxyglucose ((18) F-FDG) and fluorine-18 sodium fluoride ((18) F-NaF) PET/CT in the skeletal assessment of patients with multiple myeloma (MM) and to compare the efficacy of these two PET tracers regarding detection of myeloma-indicative osseous lesions."3.80PET/CT studies of multiple myeloma using (18) F-FDG and (18) F-NaF: comparison of distribution patterns and tracers' pharmacokinetics. ( Cheng, C; Dimitrakopoulou-Strauss, A; Goldschmidt, H; Haberkorn, U; Hose, D; Kopka, K; Pan, L; Sachpekidis, C, 2014)
"The patient was finally diagnosed with myelomatosis."1.46Unexpected Diffuse 18F-NaF Uptake in the Lung Parenchyma in a Patient With Severe Hypercalcemia Due to Myelomatosis. ( Asmar, A; Bülow, J; Simonsen, L; Svolgaard, B, 2017)

Research

Studies (18)

TimeframeStudies, this research(%)All Research%
pre-19904 (22.22)18.7374
1990's2 (11.11)18.2507
2000's0 (0.00)29.6817
2010's8 (44.44)24.3611
2020's4 (22.22)2.80

Authors

AuthorsStudies
Zirakchian Zadeh, M2
Østergaard, B2
Raynor, WY2
Revheim, ME2
Seraj, SM3
Acosta-Montenegro, O1
Ayubcha, C3
Yellanki, DP1
Al-Zaghal, A2
Nielsen, AL1
Constantinescu, CM1
Gerke, O1
Werner, TJ2
Zhuang, H1
Abildgaard, N2
Høilund-Carlsen, PF3
Alavi, A4
Nguépy Keubo, FR1
Mboua, PC1
Djifack Tadongfack, T1
Fokouong Tchoffo, E1
Tasson Tatang, C1
Ide Zeuna, J1
Noupoue, EM1
Tsoplifack, CB1
Folefack, GO1
Kettani, M1
Bandelier, P1
Huo, J1
Li, H4
Yu, D1
Arulsamy, N1
AlAbbad, S1
Sardot, T1
Lekashvili, O1
Decato, D1
Lelj, F1
Alexander Ross, JB1
Rosenberg, E1
Nazir, H1
Muthuswamy, N1
Louis, C1
Jose, S1
Prakash, J1
Buan, MEM1
Flox, C1
Chavan, S1
Shi, X1
Kauranen, P1
Kallio, T1
Maia, G1
Tammeveski, K1
Lymperopoulos, N1
Carcadea, E1
Veziroglu, E1
Iranzo, A1
M Kannan, A1
Arunamata, A1
Tacy, TA1
Kache, S1
Mainwaring, RD1
Ma, M1
Maeda, K1
Punn, R1
Noguchi, S1
Hahn, S3
Iwasa, Y3
Ling, J2
Voccio, JP2
Kim, Y3
Song, J3
Bascuñán, J2
Chu, Y1
Tomita, M1
Cazorla, M1
Herrera, E1
Palomeque, E1
Saud, N1
Hoplock, LB1
Lobchuk, MM1
Lemoine, J1
Li, X10
Henson, MA1
Unsihuay, D1
Qiu, J1
Swaroop, S1
Nagornov, KO1
Kozhinov, AN1
Tsybin, YO1
Kuang, S1
Laskin, J1
Zin, NNINM1
Mohamad, MN1
Roslan, K1
Abdul Wafi, S1
Abdul Moin, NI1
Alias, A1
Zakaria, Y1
Abu-Bakar, N1
Naveed, A1
Jilani, K1
Siddique, AB1
Akbar, M1
Riaz, M1
Mushtaq, Z1
Sikandar, M1
Ilyas, S1
Bibi, I1
Asghar, A1
Rasool, G1
Irfan, M1
Li, XY1
Zhao, S1
Fan, XH1
Chen, KP1
Hua, W1
Liu, ZM1
Xue, XD1
Zhou, B1
Zhang, S3
Xing, YL1
Chen, MA1
Sun, Y1
Neradilek, MB1
Wu, XT1
Zhang, D2
Huang, W1
Cui, Y1
Yang, QQ1
Li, HW1
Zhao, XQ1
Hossein Rashidi, B1
Tarafdari, A1
Ghazimirsaeed, ST1
Shahrokh Tehraninezhad, E1
Keikha, F1
Eslami, B1
Ghazimirsaeed, SM1
Jafarabadi, M1
Silvani, Y1
Lovita, AND1
Maharani, A1
Wiyasa, IWA1
Sujuti, H1
Ratnawati, R1
Raras, TYM1
Lemin, AS1
Rahman, MM1
Pangarah, CA1
Kiyu, A1
Zeng, C2
Du, H1
Lin, D1
Jalan, D1
Rubagumya, F1
Hopman, WM1
Vanderpuye, V1
Lopes, G1
Seruga, B1
Booth, CM1
Berry, S1
Hammad, N1
Sajo, EA1
Okunade, KS1
Olorunfemi, G1
Rabiu, KA1
Anorlu, RI1
Xu, C2
Xiang, Y1
Xu, X1
Zhou, L2
Dong, X1
Tang, S1
Gao, XC1
Wei, CH1
Zhang, RG1
Cai, Q1
He, Y1
Tong, F1
Dong, JH1
Wu, G1
Dong, XR1
Tang, X1
Tao, F1
Xiang, W1
Zhao, Y2
Jin, L1
Tao, H1
Lei, Y1
Gan, H1
Huang, Y1
Chen, Y4
Chen, L3
Shan, A1
Zhao, H2
Wu, M2
Ma, Q1
Wang, J4
Zhang, E1
Zhang, J3
Li, Y5
Xue, F1
Deng, L1
Liu, L2
Yan, Z2
Wang, Y3
Meng, J1
Chen, G2
Anastassiadou, M1
Bernasconi, G1
Brancato, A1
Carrasco Cabrera, L1
Greco, L1
Jarrah, S1
Kazocina, A1
Leuschner, R1
Magrans, JO1
Miron, I1
Nave, S1
Pedersen, R1
Reich, H1
Rojas, A1
Sacchi, A1
Santos, M1
Theobald, A1
Vagenende, B1
Verani, A1
Du, L1
Liu, X1
Ren, Y1
Li, J7
Li, P1
Jiao, Q1
Meng, P1
Wang, F2
Wang, YS1
Wang, C3
Zhou, X2
Wang, W1
Wang, S2
Hou, J1
Zhang, A1
Lv, B1
Gao, C1
Pang, D1
Lu, K1
Ahmad, NH1
Wang, L1
Zhu, J2
Zhang, L2
Zhuang, T1
Tu, J1
Zhao, Z1
Qu, Y1
Yao, H1
Wang, X5
Lee, DF1
Shen, J3
Wen, L1
Huang, G2
Xie, X1
Zhao, Q1
Hu, W1
Zhang, Y5
Wu, X1
Lu, J2
Li, M1
Li, W2
Wu, W1
Du, F1
Ji, H1
Yang, X2
Xu, Z1
Wan, L1
Wen, Q1
Cho, CH1
Zou, C1
Xiao, Z1
Liao, J1
Su, X1
Bi, Z1
Su, Q1
Huang, H1
Wei, Y2
Gao, Y2
Na, KJ1
Choi, H1
Oh, HR1
Kim, YH1
Lee, SB1
Jung, YJ1
Koh, J1
Park, S1
Lee, HJ1
Jeon, YK1
Chung, DH1
Paeng, JC1
Park, IK1
Kang, CH1
Cheon, GJ1
Kang, KW1
Lee, DS1
Kim, YT1
Pajuelo-Lozano, N1
Alcalá, S1
Sainz, B1
Perona, R1
Sanchez-Perez, I1
Logotheti, S1
Marquardt, S1
Gupta, SK1
Richter, C1
Edelhäuser, BAH1
Engelmann, D1
Brenmoehl, J1
Söhnchen, C1
Murr, N1
Alpers, M1
Singh, KP1
Wolkenhauer, O1
Heckl, D1
Spitschak, A1
Pützer, BM1
Liao, Y1
Cheng, J1
Kong, X1
Li, S1
Zhang, M4
Zhang, H1
Yang, T2
Dong, Y1
Xu, Y1
Yuan, Z1
Cao, J1
Zheng, Y1
Luo, Z1
Mei, Z1
Yao, Y1
Liu, Z2
Liang, C1
Yang, H1
Song, Y1
Yu, K1
Zhu, C1
Huang, Z2
Qian, J1
Ge, J1
Hu, J2
Wang, H2
Liu, Y4
Mi, Y1
Kong, H1
Xi, D1
Yan, W1
Luo, X1
Ning, Q1
Chang, X2
Zhang, T2
Wang, Q2
Rathore, MG1
Reddy, K1
Chen, H1
Shin, SH1
Ma, WY1
Bode, AM1
Dong, Z1
Mu, W1
Liu, C3
Gao, F1
Qi, Y1
Lu, H1
Zhang, X4
Cai, X1
Ji, RY1
Hou, Y3
Tian, J2
Shi, Y1
Ying, S1
Tan, M1
Feng, G1
Kuang, Y1
Chen, D1
Wu, D3
Zhu, ZQ1
Tang, HX1
Shi, ZE1
Kang, J1
Liu, Q1
Qi, J2
Mu, J1
Cong, Z1
Chen, S2
Fu, D1
Li, Z2
Celestrin, CP1
Rocha, GZ1
Stein, AM1
Guadagnini, D1
Tadelle, RM1
Saad, MJA1
Oliveira, AG1
Bianconi, V1
Bronzo, P1
Banach, M1
Sahebkar, A1
Mannarino, MR1
Pirro, M1
Patsourakos, NG1
Kouvari, M1
Kotidis, A1
Kalantzi, KI1
Tsoumani, ME1
Anastasiadis, F1
Andronikos, P1
Aslanidou, T1
Efraimidis, P1
Georgiopoulos, A1
Gerakiou, K1
Grigoriadou-Skouta, E1
Grigoropoulos, P1
Hatzopoulos, D1
Kartalis, A1
Lyras, A1
Markatos, G1
Mikrogeorgiou, A1
Myroforou, I1
Orkopoulos, A1
Pavlidis, P1
Petras, C1
Riga, M1
Skouloudi, M1
Smyrnioudis, N1
Thomaidis, K1
Tsikouri, GE1
Tsikouris, EI1
Zisimos, K1
Vavoulis, P1
Vitali, MG1
Vitsas, G1
Vogiatzidis, C1
Chantanis, S1
Fousas, S1
Panagiotakos, DB1
Tselepis, AD1
Jungen, C1
Alken, FA1
Eickholt, C1
Scherschel, K1
Kuklik, P1
Klatt, N1
Schwarzl, J1
Moser, J1
Jularic, M1
Akbulak, RO1
Schaeffer, B1
Willems, S1
Meyer, C1
Nowak, JK1
Szczepanik, M1
Trypuć, M1
Pogorzelski, A1
Bobkowski, W1
Grytczuk, M1
Minarowska, A1
Wójciak, R1
Walkowiak, J1
Lu, Y1
Xi, J1
Li, C1
Chen, W2
Hu, X1
Zhang, F1
Wei, H1
Wang, Z1
Gurzu, S1
Jung, I1
Sugimura, H2
Stefan-van Staden, RI1
Yamada, H1
Natsume, H1
Iwashita, Y1
Szodorai, R1
Szederjesi, J1
Yari, D1
Ehsanbakhsh, Z1
Validad, MH1
Langroudi, FH1
Esfandiari, H1
Prager, A1
Hassanpour, K1
Kurup, SP1
Mets-Halgrimson, R1
Yoon, H1
Zeid, JL1
Mets, MB1
Rahmani, B1
Araujo-Castillo, RV1
Culquichicón, C1
Solis Condor, R1
Efendi, F1
Sebayang, SK1
Astutik, E1
Hadisuyatmana, S1
Has, EMM1
Kuswanto, H1
Foroutan, T1
Ahmadi, F1
Moayer, F1
Khalvati, S1
Zhang, Q2
Lyu, Y1
Huang, J1
Yu, N1
Wen, Z1
Hou, H1
Zhao, T1
Gupta, A1
Khosla, N1
Govindasamy, V1
Saini, A1
Annapurna, K1
Dhakate, SR1
Akkaya, Ö1
Chandgude, AL1
Dömling, A1
Harnett, J1
Oakes, K1
Carè, J1
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Brown, D1
Cramer, H1
Pinder, TA1
Steel, A1
Anheyer, D1
Cantu, J1
Valle, J1
Flores, K1
Gonzalez, D1
Valdes, C1
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Padilla, V1
Alcoutlabi, M1
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Núñez, K1
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de Oliveira, PD1
Wehrmeister, FC1
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Saleh, AA1
El-Araby, IE1
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Schijven, MP1
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Carvalho, PDS1
Grivicich, I1
Picada, JN1
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Vasques, GJ1
Pereira, MADS1
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Ferraz, ABF1
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Gorshkova, EN1
Astrakhantseva, IV1
Drutskaya, MS1
Tillib, SV1
Nedospasov, SA1
Mokhonov, VV1
Nam, YW1
Cui, M1
Orfali, R1
Viegas, A1
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Zoghebi, KA1
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Parang, K1
Patterson, KC1
Kahanovitch, U1
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Hablitz, JJ1
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Mulkey, DK1
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Wu, K1
Zhang, YY1
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Sun, H1
Qi, MC1
Chang, CC1
Dinh, TK1
Lee, YA1
Wang, FN1
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Wu, CY1
Huang, YD1
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Cline, JP1
Snyder, MA1
Kiely, CJ1
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Yang, R1
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Ye, Q1
Junttila, MR1
Ndubaku, C1
Friedman, LS1
Fantin, VR1
Sun, D1
Fei, P1
Xie, Q1
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Chen, J1
Shao, Z1
Yuan, C1
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Canham, K1
Wallace, R1
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Newcomb, C1
Nammour, S1
El Mobadder, M1
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Namour, M1
Namour, A1
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Reviews

4 reviews available for sodium fluoride and Multiple Myeloma

ArticleYear
Psychological distress among health care professionals of the three COVID-19 most affected Regions in Cameroon: Prevalence and associated factors.
    Annales medico-psychologiques, 2021, Volume: 179, Issue:2

    Topics: 3' Untranslated Regions; 5'-Nucleotidase; A549 Cells; Accidental Falls; Acetylcholinesterase; Acryli

2021
Evolving Roles of Fluorodeoxyglucose and Sodium Fluoride in Assessment of Multiple Myeloma Patients: Introducing a Novel Method of PET Quantification to Overcome Shortcomings of the Existing Approaches.
    PET clinics, 2019, Volume: 14, Issue:3

    Topics: Fluorodeoxyglucose F18; Humans; Multiple Myeloma; Positron Emission Tomography Computed Tomography;

2019
[Bone manifestations of multiple myeloma and therapeutic possibilities].
    Acta medica Austriaca, 1994, Volume: 21, Issue:5

    Topics: Calcitonin; Diphosphonates; Humans; Multiple Myeloma; Osteoporosis; Randomized Controlled Trials as

1994
Current concepts in cancer. Multiple myeloma.
    The New England journal of medicine, 1979, Jul-26, Volume: 301, Issue:4

    Topics: Antineoplastic Agents; Carmustine; Cyclophosphamide; Drug Therapy, Combination; Humans; Immunoglobul

1979

Trials

3 trials available for sodium fluoride and Multiple Myeloma

ArticleYear
Psychological distress among health care professionals of the three COVID-19 most affected Regions in Cameroon: Prevalence and associated factors.
    Annales medico-psychologiques, 2021, Volume: 179, Issue:2

    Topics: 3' Untranslated Regions; 5'-Nucleotidase; A549 Cells; Accidental Falls; Acetylcholinesterase; Acryli

2021
Comparison of two long-term chemotherapy regimens, with or without agents to modify skeletal repair, in multiple myeloma.
    Blood, 1984, Volume: 63, Issue:3

    Topics: Antineoplastic Combined Chemotherapy Protocols; Bone Neoplasms; Calcium Gluconate; Carmustine; Clini

1984
Effect of sodium fluoride, calcium carbonate, and vitamin D on the skeleton in multiple myeloma.
    Cancer, 1980, Apr-01, Volume: 45, Issue:7

    Topics: Bone Diseases; Calcium Carbonate; Clinical Trials as Topic; Double-Blind Method; Drug Therapy, Combi

1980

Other Studies

12 other studies available for sodium fluoride and Multiple Myeloma

ArticleYear
Comparison of
    European journal of nuclear medicine and molecular imaging, 2020, Volume: 47, Issue:12

    Topics: Femur Neck; Hematopoietic Stem Cell Transplantation; Humans; Multiple Myeloma; Pelvis; Positron Emis

2020
Assessment of atherosclerosis in multiple myeloma and smoldering myeloma patients using
    Journal of nuclear cardiology : official publication of the American Society of Nuclear Cardiology, 2021, Volume: 28, Issue:6

    Topics: Atherosclerosis; Fluorine Radioisotopes; Humans; Multiple Myeloma; Positron Emission Tomography Comp

2021
(18)F-sodium fluoride PET in multiple myeloma: Linking cancer to atherosclerosis?
    Journal of nuclear cardiology : official publication of the American Society of Nuclear Cardiology, 2021, Volume: 28, Issue:6

    Topics: Atherosclerosis; Fluorodeoxyglucose F18; Humans; Multiple Myeloma; Positron-Emission Tomography; Sod

2021
Sodium fluoride PET imaging as a quantitative pharmacodynamic biomarker for bone homeostasis during anti-DKK1 therapy for multiple myeloma.
    Blood cancer journal, 2017, 10-06, Volume: 7, Issue:10

    Topics: Aged; Aged, 80 and over; Biomarkers; Bone and Bones; Female; Homeostasis; Humans; Intercellular Sign

2017
Identification of Heterotopic Ossification Using 18F-NaF PET/CT.
    Clinical nuclear medicine, 2019, Volume: 44, Issue:4

    Topics: Aged; Female; Fluorine Radioisotopes; Humans; Multiple Myeloma; Ossification, Heterotopic; Positron

2019
Different lesions revealed by 18F-FDG PET/CT and 18F-NaF PET/CT in patients with multiple myeloma.
    Clinical nuclear medicine, 2014, Volume: 39, Issue:9

    Topics: Aged, 80 and over; Bone and Bones; Fluorodeoxyglucose F18; Humans; Male; Middle Aged; Multimodal Ima

2014
PET/CT studies of multiple myeloma using (18) F-FDG and (18) F-NaF: comparison of distribution patterns and tracers' pharmacokinetics.
    European journal of nuclear medicine and molecular imaging, 2014, Volume: 41, Issue:7

    Topics: Aged; Female; Fluorodeoxyglucose F18; Humans; Male; Middle Aged; Multimodal Imaging; Multiple Myelom

2014
18F-FDG and 18F-NaF PET/CT Findings of a Multiple Myeloma Patient With Thyroid Cartilage Involvement.
    Clinical nuclear medicine, 2015, Volume: 40, Issue:11

    Topics: Adult; Fluorine Radioisotopes; Fluorodeoxyglucose F18; Humans; Male; Multimodal Imaging; Multiple My

2015
Significant 99mTc-MDP but Unimpressive 18F-NaF Gastric Activity in a Patient With Multiple Myeloma.
    Clinical nuclear medicine, 2016, Volume: 41, Issue:9

    Topics: Aged; Fluorine Radioisotopes; Humans; Male; Multiple Myeloma; Positron Emission Tomography Computed

2016
Unexpected Diffuse 18F-NaF Uptake in the Lung Parenchyma in a Patient With Severe Hypercalcemia Due to Myelomatosis.
    Clinical nuclear medicine, 2017, Volume: 42, Issue:1

    Topics: Aged, 80 and over; Amyloidosis; Bone and Bones; Calcinosis; Diagnosis, Differential; Fluorine Radioi

2017
Sodium fluoride treatment of bone disease in multiple myeloma.
    Texas medicine, 1984, Volume: 80, Issue:12

    Topics: Calcium Carbonate; Drug Therapy, Combination; Estrogens, Conjugated (USP); Humans; Multiple Myeloma;

1984
Influence of the fluoride ion in the stability of bone hydroxyapatite achieved in patients after the fluo-calcic therapy.
    Bollettino della Societa italiana di biologia sperimentale, 1991, Volume: 67, Issue:4

    Topics: Bone and Bones; Bone Neoplasms; Fluorides; Humans; Microscopy, Electron, Scanning; Multiple Myeloma;

1991