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of 7
pro vyhledávání: '"Bermúdez Hernández, Pablo Andrés"'
Autor:
Medina-Córdoba, Mariana, Cadavid, Sara, Espinosa-Aranzales, Angela-Fernanda, Aguía-Rojas, Karen, Bermúdez-Hernández, Pablo Andrés, Quiroga-Torres, Daniel-Alejandro, Rodríguez-Dueñas, William R.
Publikováno v:
Advances in Health Sciences Education; Sep2024, Vol. 29 Issue 4, p1463-1480, 18p
Akademický článek
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Autor:
Aguia-Rojas, Karen, Bermúdez Hernández, Pablo-Andrés, Espinha, Sara Cadavid, Quintero-Hernández, Gustavo A., Vergel, John, Bermúdez-Hernández, Pablo-Andrés, Cadavid Espinha, Sara, Quintero Hernández, Gustavo A., Alvarado Sánchez, Ricardo, Molina Béjar, Rocío Stella, Avendaño-Calderón, Angélica, Ospina-Maldonado, Vladimir-Mauricio, Quiroga-Torres, Daniel-Alejandro, Forero-Nieto, Sandra-Liliana, Espinosa-Aranzales, Ángela-Fernanda
De acuerdo con el planteamiento de Hugh Barr (2009), la educación interprofesional (EIP) ocurre cuando dos o más profesiones aprenden con, desde y sobre el otro para mejorar la práctica colaborativa, la calidad de los cuidados y los servicios pres
Akademický článek
Tento výsledek nelze pro nepřihlášené uživatele zobrazit.
K zobrazení výsledku je třeba se přihlásit.
K zobrazení výsledku je třeba se přihlásit.
Autor:
Del Riesgo Prendes, Lilia, Salamanca Matta, Alba Lucía, Monterrey Gutiérrez, Pedro Agustín, Bermúdez Hernández, Pablo Andrés, Vélez Leal, Juan Luis, Suárez Rodríguez, Germán
Publikováno v:
Repositorio UN
Universidad Nacional de Colombia
instacron:Universidad Nacional de Colombia
Universidad Nacional de Colombia
instacron:Universidad Nacional de Colombia
Objetivo Identificar los factores de riesgo maternos, fetales y neonatales asociados a la hipoxia perinatal en los recién nacidos del Hospital Universitario Mayor Mederi (HUM Mederi), período 2007 a 2011.Metodología Del total de recién nacidos (8
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=dedup_wf_001::a801134cbe7aab49a5b2e867c2e70b9f
https://repositorio.unal.edu.co/handle/unal/65510
https://repositorio.unal.edu.co/handle/unal/65510
Autor:
Piñeros Chávez, Laura
Publikováno v:
Cheungpasitporn W, Thongprayoon C, Kittanamongkolchai W, Srivali N, Edmonds PJ, Ungprasert P, et al. Proton pump inhibitors linked to hypomagnesemia: A systematic review and meta-analysis of observational studies. Ren Fail. 2015;37(7):1237–41.
Uslu Gökceoǧlu A, Comak E, Dogan CS, Koyun M, Akbas H, Akman S. Magnesium excretion and hypomagnesemia in pediatric renal transplant recipients. Ren Fail. 2014;36(7):1056–9.
Trompeter R, Filler G, Webb NJA, Watson AR, Milford D V., Tyden G, et al. Randomized trial of tracolimus versus cyclosporin microemulsion in renal transplantation. Pediatr Nephrol. 2002;17(3):141–9.
Douwes RM, Gomes-Neto AW, Schutten JC, van den Berg E, de Borst MH, Berger SP, et al. Proton-Pump Inhibitors and Hypomagnesaemia in Kidney Transplant Recipients. J Clin Med. 2019;8(12):2162.
Filler G. Calcineurin inhibitors in pediatric renal transplant recipients. Paediatr Drugs. 2007;9(3):165–74.
Van Laecke S, Van Biesen W. Hypomagnesaemia in kidney transplantation. Transplant Rev [Internet]. 2015;29(3):154–60. Available from: http://dx.doi.org/10.1016/j.trre.2015.05.002
Navaneethan SD, Sankarasubbaiyan S, Gross MD, Jeevanantham V, Monk RD. Tacrolimus-Associated Hypomagnesemia in Renal Transplant Recipients. Transplant Proc. 2006;38(5):1320–2
Rodrigues N, Santana A, Guerra J, Neves M, Nascimento C, Gonçalves J, et al. Serum Magnesium and Related Factors in Long-Term Renal Transplant Recipients: An Observational Study. Transplant Proc. 2017;49(4):799–802.
Quamme, GA; Dirks J. The Physiology of Renal Magnesium Handling. Ren Physiol. 1986;9:257–69.
Houillier P. Mechanisms and regulation of renal magnesium transport. Annu Rev Physiol. 2014;76:411–30.
Blaine J, Chonchol M, Levi M. Renal control of calcium, phosphate, and magnesium homeostasis. Clin J Am Soc Nephrol. 2015;10(7):1257–72.
Park CH, Kim EH, Roh YH, Kim HY, Lee SK. The association between the use of proton pump inhibitors and the risk of hypomagnesemia: A systematic review and meta-analysis. PLoS One. 2014;9(11).
Guyton AC HH. Tratado de fisiología médica. 11a ed. Bonet Serra B, editor. Barcelona: Elsevier; 2006.
Romani AMP. Cellular magnesium homeostasis. Arch Biochem Biophys. 2011;512(1):1–23.
Trompeter R, Filler G, Webb NJ a, Watson AR, Milford D V, Tyden G, et al. Randomized trial of tacrolimus versus cyclosporin microemulsion in renal transplantation. Pediatr Nephrol. 2002;17(3):141–9.
Castiglioni S, Cazzaniga A, Albisetti W, Maier J. Magnesium and Osteoporosis: Current State of Knowledge and Future Research Directions. Nutrients. 2013;5(8):3022–33.
Van Laecke S, Vermeiren P, Nagler E V., Caluwe R, De Wilde M, Van der Vennet M, et al. Magnesium and infection risk after kidney transplantation: An observational cohort study. J Infect. 2016;73(1):8–17.
Miles CD, Westphal SG. Electrolyte disorders in kidney transplantation. Clin J Am Soc Nephrol. 2020;15(3):412–4.
De Waele L, Van Gaal PJ, Abramowicz D. Electrolytes disturbances after kidney transplantation. Acta Clin Belgica Int J Clin Lab Med. 2019;74(1):48–52.
Van Laecke S. Hypomagnesemia and hypermagnesemia. Acta Clin Belgica Int J Clin Lab Med [Internet]. 2019;74(1):41–7. Available from: https://doi.org/10.1080/17843286.2018.1516173
Osorio JM, Bravo J, Pérez A, Ferreyra C, Osuna A. Magnesemia in renal transplant recipients: Relation with immunosuppression and posttransplant diabetes. Transplant Proc [Internet]. 2010;42(8):2910–3. Available from: http://dx.doi.org/10.1016/j.transproceed.2010.08.016
Repositorio EdocUR-U. Rosario
Universidad del Rosario
instacron:Universidad del Rosario
Uslu Gökceoǧlu A, Comak E, Dogan CS, Koyun M, Akbas H, Akman S. Magnesium excretion and hypomagnesemia in pediatric renal transplant recipients. Ren Fail. 2014;36(7):1056–9.
Trompeter R, Filler G, Webb NJA, Watson AR, Milford D V., Tyden G, et al. Randomized trial of tracolimus versus cyclosporin microemulsion in renal transplantation. Pediatr Nephrol. 2002;17(3):141–9.
Douwes RM, Gomes-Neto AW, Schutten JC, van den Berg E, de Borst MH, Berger SP, et al. Proton-Pump Inhibitors and Hypomagnesaemia in Kidney Transplant Recipients. J Clin Med. 2019;8(12):2162.
Filler G. Calcineurin inhibitors in pediatric renal transplant recipients. Paediatr Drugs. 2007;9(3):165–74.
Van Laecke S, Van Biesen W. Hypomagnesaemia in kidney transplantation. Transplant Rev [Internet]. 2015;29(3):154–60. Available from: http://dx.doi.org/10.1016/j.trre.2015.05.002
Navaneethan SD, Sankarasubbaiyan S, Gross MD, Jeevanantham V, Monk RD. Tacrolimus-Associated Hypomagnesemia in Renal Transplant Recipients. Transplant Proc. 2006;38(5):1320–2
Rodrigues N, Santana A, Guerra J, Neves M, Nascimento C, Gonçalves J, et al. Serum Magnesium and Related Factors in Long-Term Renal Transplant Recipients: An Observational Study. Transplant Proc. 2017;49(4):799–802.
Quamme, GA; Dirks J. The Physiology of Renal Magnesium Handling. Ren Physiol. 1986;9:257–69.
Houillier P. Mechanisms and regulation of renal magnesium transport. Annu Rev Physiol. 2014;76:411–30.
Blaine J, Chonchol M, Levi M. Renal control of calcium, phosphate, and magnesium homeostasis. Clin J Am Soc Nephrol. 2015;10(7):1257–72.
Park CH, Kim EH, Roh YH, Kim HY, Lee SK. The association between the use of proton pump inhibitors and the risk of hypomagnesemia: A systematic review and meta-analysis. PLoS One. 2014;9(11).
Guyton AC HH. Tratado de fisiología médica. 11a ed. Bonet Serra B, editor. Barcelona: Elsevier; 2006.
Romani AMP. Cellular magnesium homeostasis. Arch Biochem Biophys. 2011;512(1):1–23.
Trompeter R, Filler G, Webb NJ a, Watson AR, Milford D V, Tyden G, et al. Randomized trial of tacrolimus versus cyclosporin microemulsion in renal transplantation. Pediatr Nephrol. 2002;17(3):141–9.
Castiglioni S, Cazzaniga A, Albisetti W, Maier J. Magnesium and Osteoporosis: Current State of Knowledge and Future Research Directions. Nutrients. 2013;5(8):3022–33.
Van Laecke S, Vermeiren P, Nagler E V., Caluwe R, De Wilde M, Van der Vennet M, et al. Magnesium and infection risk after kidney transplantation: An observational cohort study. J Infect. 2016;73(1):8–17.
Miles CD, Westphal SG. Electrolyte disorders in kidney transplantation. Clin J Am Soc Nephrol. 2020;15(3):412–4.
De Waele L, Van Gaal PJ, Abramowicz D. Electrolytes disturbances after kidney transplantation. Acta Clin Belgica Int J Clin Lab Med. 2019;74(1):48–52.
Van Laecke S. Hypomagnesemia and hypermagnesemia. Acta Clin Belgica Int J Clin Lab Med [Internet]. 2019;74(1):41–7. Available from: https://doi.org/10.1080/17843286.2018.1516173
Osorio JM, Bravo J, Pérez A, Ferreyra C, Osuna A. Magnesemia in renal transplant recipients: Relation with immunosuppression and posttransplant diabetes. Transplant Proc [Internet]. 2010;42(8):2910–3. Available from: http://dx.doi.org/10.1016/j.transproceed.2010.08.016
Repositorio EdocUR-U. Rosario
Universidad del Rosario
instacron:Universidad del Rosario
Introducción: La hipomagnesemia es un trastorno frecuente en los pacientes receptores de trasplante renal. El uso de inhibidores de calcineurina se ha asociado a este desenlace. Es importante evaluar los factores asociados al desarrollo de hipomagne
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::9b9324907689867b9ca0debb6a776e61