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1Academic Journal
المؤلفون: Sarmiento Urbina, Isabel Cristina, Linares Ballesteros, Adriana, Contreras Acosta, Agustín, Cabrera Bernal, Edgar Vladimir, Pardo González, Carlos Alberto, Uribe Botero, Gloria Inés, Aponte Barrios, Nelson Hernando
المصدر: Iatreia, Vol 32, Iss 2, Pp 71-81 (2019)
مصطلحات موضوعية: Acute Lymphoid Leukemia, Child, Survival, Treatment, Medicine, Medicine (General), R5-920
وصف الملف: electronic resource
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2Academic Journal
المؤلفون: Pardo-Gonzalez, Carlos Alberto, Lagos-Ibarra, Jymmy Javier, Linares-Ballesteros, Adriana, Sarmiento-Urbina, Isabel Cristina, Contreras-Acosta, Agustín Darío, Cabrera-Bernal, Edgar Vladimir, Uribe-Botero, Gloria Inés, Barros-García, Gisela, Aponte-Barrios, Nelson Hernando
المصدر: Revista de la Facultad de Medicina; Vol. 69 No. 2 (2021); e80152 ; Revista de la Facultad de Medicina; Vol. 69 Núm. 2 (2021); e80152 ; Revista de la Facultad de Medicina; v. 69 n. 2 (2021); e80152 ; 2357-3848 ; 0120-0011
مصطلحات موضوعية: Acute Promyelocytic Leukemia, Children, Survival, Treatment, Medicine, Oncology, Pediatrics, Hematology, Leucemia promielocitica aguda, Niños, Supervivencia, Tratamiento, Medicina, Oncología, Pediatría, Hematología
وصف الملف: application/pdf; text/html; text/xml
Relation: https://revistas.unal.edu.co/index.php/revfacmed/article/view/80152/76618; https://revistas.unal.edu.co/index.php/revfacmed/article/view/80152/80123; https://revistas.unal.edu.co/index.php/revfacmed/article/view/80152/89724; https://revistas.unal.edu.co/index.php/revfacmed/article/view/80152
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المؤلفون: Pardo-Gonzalez, Carlos Alberto, Lagos-Ibarra, Jimmy Javier, Linares-Ballesteros, Adriana, Sarmiento-Urbina, Isabel Cristina, Contreras-Acosta, Agustín Darío, Cabrera-Bernal, Edgar Vladimir, Uribe-Botero, Gloria Inés, Barros-García, Gisela, Aponte-Barrios, Nelson Hernando
المصدر: Revista de la Facultad de Medicina, Volume: 69, Issue: 2, Article number: e202, Published: 30 JUN 2021
مصطلحات موضوعية: Supervivencia, Survival, Acute Promyelocytic Leukemia, Treatment (MeSH), Tratamiento (DeCS), Children, Niños, Leucemia promielocitica aguda
وصف الملف: text/html
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4Academic Journal
المؤلفون: Aponte-Barrios, Nelson Hernando, Linares-Ballesteros, Adriana, Sarmiento-Urbina, Isabel Cristina, Uribe-Botero, Gloria Inés
المصدر: Revista de la Facultad de Medicina; Vol. 62 Núm. 4 (2014); 547-552 ; Revista de la Facultad de Medicina; Vol. 62 No. 4 (2014); 547-552 ; Revista de la Facultad de Medicina; v. 62 n. 4 (2014); 547-552 ; 2357-3848 ; 0120-0011
مصطلحات موضوعية: Thrombocytopenia, Purpura, Thrombocytopenic, Idiopathic, Mean Platelet Volume, Trombocitopenia, Púrpura Trombocitopénica Idiopática, Volumen Plaquetario Medio
وصف الملف: application/pdf; text/html
Relation: https://revistas.unal.edu.co/index.php/revfacmed/article/view/43754/50714; https://revistas.unal.edu.co/index.php/revfacmed/article/view/43754/64396; Bowles KM, Cooke LJ, Richards EM, Baglin TP. Platelet size has diagnostic predictive value in patients with thrombocytopenia. Clin Lab Haematol. 2005;27:370-3. http://doi.org/fq6834.; Numbenjapon T, Mahapo N, Pornvipavee R, Sriswasdi C, Mongkonsritragoon W, Leelasiri A, et al. A prospective evaluation of normal mean platelet volume in discriminating hyperdestructive thrombocytopenia from hypoproductive thrombocytopenia. Int J Lab Hematol. 2008;30:408-14. http://doi.org/dxrmbh.; Kaito K, Otsubo H, Usui N, Yoshida M, Tanno J, Kurihara E, et al. Platelet size deviation width, platelet large cell ratio, and mean platelet volume have sufficient sensitivity and specificity in the diagnosis of immune thrombocytopenia. Br J Haematol. 2005;128:698-702. http://doi.org/brvcgh.; Lee WS, Kim TY. Mean platelet volume and platelet distribution width are useful in the differential diagnosis of aplastic anemia and idiopathic thrombocytopenic purpura. Clin Chem Lab Med. 2010;48:1675-6. http://doi.org/fnz3gm.; Ntaios G, Papadopoulos A, Chatzinikolaou A, Saouli Z, Karalazou P, Kaiafa G, et al. Increased values of mean platelet volume and platelet size deviation width may provide a safe positive diagnosis of idiopathic thrombocytopenic purpura. Acta Haematol. 2008;119:173-7. http://doi.org/cqvmp8.; Borkataky S, Jain R, Gupta R, Singh S, Krishan G, Gupta K, et al. Role of platelet volume indices in the differential diagnosis of thrombocytopenia: a simple and inexpensive method. Hematology. 2009;14:182-6. http://doi.org/ddhdrq.; Briggs C, Harrison P, Machin SJ. Continuing developments with the automated platelet count. Int J Lab Hematol. 2007;29:77-91. http://doi.org/dhj8h7.; Farias MG, Schunck EG, Dal Bó S, de Castro SM. Definition of reference ranges for the platelet distribution width (PDW): a local need. Clin Chem Lab Med. 2010;48:255-7. http://doi.org/b3zwfc.; Brummitt DR, Barker HF. The determination of a reference range for new platelet parameters produced by the Bayer ADVIA120 full blood count analyser. Clin Lab Haematol. 2000;22:103-7. http://doi.org/bdwvfw.; Lanzkowsky P. Chapter 12 - Disorders of Platelets. In: Lanzkowsky P, editor. Manual of Pediatric Hematology and Oncology. 5th edition San Diego: Academic Press; 2011. pp. 321-77. http://doi.org/dj4bfc.; Monteagudo E, Fernández-Delgado R, Sastre A, Toll T, Llort A, Molina J, et al. Protocol for the study and treatment of immune thrombocytopenic purpura (ITP). ITP-2010. An Pediatr (Barc). 2011; 74:414.e1-8.; Provan D, Stasi R, Newland AC, Blanchette VS, Bolton-Maggs P, Bussel JB, et al. International consensus report on the investigation and management of primary immune thrombocytopenia. Blood. 2010;115:168-86. http://doi.org/bwdf3s.; Rodeghiero F, Stasi R, Gernsheimer T, Michel M, Provan D, Arnold DM, et al. Standardization of terminology, definitions and outcome criteria in immune thrombocytopenic purpura of adults and children: report from an international working group. Blood. 2009;113:2386-93. http://doi.org/dj3ss8.; Consolini DM. Thrombocytopenia in infants and children. Pediatr Rev. 2011;32:135-51. http://doi.org/fgq2pz.; Psaila B, Petrovic A, Page LK, Menell J, Schonholz M, Bussel JB. Intracranial hemorrhage (ICH) in children with immune thrombocytopenia (ITP): study of 40 cases. Blood. 2009;114:4777-83. http://doi.org/c2sv5z.; Yamaoka G, Kubota Y, Nomura T, Inage T, Arai T, Kitanaka A, et al. The immature platelet fraction is a useful marker for predicting the timing of platelet recovery in patients with cancer after chemotherapy and hematopoietic stem cell transplantation. Int J Lab Hematol. 2010;32:e208-16. http://doi.org/cr7p45.; https://revistas.unal.edu.co/index.php/revfacmed/article/view/43754
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5Academic Journal
المؤلفون: Aponte-Barrios, Nelson Hernando, Linares-Ballesteros, Adriana, Sarmiento-Urbina, Isabel Cristina, Uribe-Botero, Gloria Inés
مصطلحات موضوعية: 61 Ciencias médicas, Medicina / Medicine and health, Thrombocytopenia, Purpura, Thrombocytopenic, Idiopathic, Mean Platelet Volume, Trombocitopenia, Púrpura Trombocitopénica Idiopática, Volumen Plaquetario Medio
وصف الملف: application/pdf
Relation: https://revistas.unal.edu.co/index.php/revfacmed/article/view/43754; Universidad Nacional de Colombia Revistas electrónicas UN Revista de la Facultad de Medicina; Revista de la Facultad de Medicina; Aponte-Barrios, Nelson Hernando and Linares-Ballesteros, Adriana and Sarmiento-Urbina, Isabel Cristina and Uribe-Botero, Gloria Inés (2014) Evaluation of the diagnostic performance of platelet-derived indices for the differential diagnosis of thrombocytopenia in pediatrics. Revista de la Facultad de Medicina, 62 (4). pp. 547-552. ISSN 2357-3848; https://repositorio.unal.edu.co/handle/unal/65369; http://bdigital.unal.edu.co/66392/
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6Electronic Resource
Additional Titles: Resultados de la implementación del protocolo PETHEMA LPA 99 en el tratamiento de niños con leucemia promielocítica aguda en Bogotá, Colombia
المؤلفون: Pardo-Gonzalez, Carlos Alberto, Lagos-Ibarra, Jymmy Javier, Linares-Ballesteros, Adriana, Sarmiento-Urbina, Isabel Cristina, Contreras-Acosta, Agustín Darío, Cabrera-Bernal, Edgar Vladimir, Uribe-Botero, Gloria Inés, Barros-García, Gisela, Aponte-Barrios, Nelson Hernando
المصدر: Revista de la Facultad de Medicina; Vol. 69 Núm. 2 (2021); e80152; Revista de la Facultad de Medicina; Vol. 69 No. 2 (2021); e80152; Revista de la Facultad de Medicina; v. 69 n. 2 (2021); e80152; 2357-3848; 0120-0011
مصطلحات الفهرس: Leucemia promielocitica aguda, Niños, Supervivencia, Tratamiento, Medicina, Oncología, Pediatría, Hematología, Acute Promyelocytic Leukemia, Children, Survival, Treatment, Medicine, Oncology, Pediatrics, Hematology, info:eu-repo/semantics/article, info:eu-repo/semantics/publishedVersion, Original research, Investigación original, Investigação original
URL:
https://revistas.unal.edu.co/index.php/revfacmed/article/view/80152/76618 https://revistas.unal.edu.co/index.php/revfacmed/article/view/80152/80123 https://revistas.unal.edu.co/index.php/revfacmed/article/view/80152/76618 https://revistas.unal.edu.co/index.php/revfacmed/article/view/80152/80123
*ref*/Pizzo PA, Poplack DG. Principles and Practice of Pediatric Oncology. 7th ed. Lippincott Williams&Wilki; 2015.
*ref*/Melo RAM, de Vasconcellos JF, Melo FCBC, Machado CGF, Lacerda TMS, Souto FR. PML-RAR alpha fusion gene transcripts and biological features in acute promyelocytic leukemia patients. Clin Lab Haematol. 2006;28(2):126-29. https://doi.org/ccq5km.
*ref*/Rego EM, Jacomo RH. Epidemilogy and treatment of Acute Promyelocytic Leukemia in Latin America. Mediterr J Hematol Infect Dis. 2011,3(1):e2011049. https://doi.org/fbfbkm.
*ref*/Lin RJ, Egan DA, Evans RM. Molecular genetics of acute promyelocytic leukemia. Trends Genet. 1999;15(5):179-84. https://doi.org/fgmzgz.
*ref*/Sanz MA, Martín G, González M, León A, Rayón C, Rivas C, et al. Risk-adapted treatment of acute promyelocytic leukemia with all-trans-retinoic acid and anthracycline monochemotherapy: a multicenter study by the PETHEMA group. Blood. 2004;103(4):1237-43. https://doi.org/cdh7k9.
*ref*/Sanz MA, Montesinos P, Vellenga E, Rayón C, de la Serna J, Parody R, et al. Risk-adapted treatment of acute promyelocytic leukemia with all-trans retinoic acid and anthracycline monochemotherapy: long-term outcome of the LPA 99 multicenter study by the PETHEMA Group. Blood. 2008;112(8):3130-4. https://doi.org/bh7dc4.
*ref*/Yamamoto M, Okada K, Akiyama H, Kurosu T, Miura O. Evaluation of the efficacy of maintenance therapy for low-to-intermediate-risk acute promyelocytic leukemia in molecular remission: A retrospective single-institution study. Mol Clin Oncol. 2015;3(2):449-53. https://doi.org/f3d8.
*ref*/Yoo ES. Recent advances in the diagnosis and management of childhood acute promyelocytic leukemia. Korean J Pediatr. 2011;54(3):95-105. https://doi.org/c4d2r7.
*ref*/Serefhanoglu S, Buyukasik Y, Goker H, Sayinalp N, Haznedaroglu IC, Aksu S, et al. Clinical features and outcomes of 49 Turkish patients with acute promyelocytic leukemia who received ATRA and anthracyclines (PETHEMA protocol) therapy. Leuk Res. 2010;34(12):e317-9. https://doi.org/bz4jv9.
*ref*/Jeddi R, Ghédira H, Menif S, Ben Neji H, Ben Amor R, Kacem K, et al. Treatment of acute promyelocytic leukemia with PETHEMA LPA 99 protocol: a Tunisian single center experience. Hematology. 2010;15(4):204-9. https://doi.org/bpdxzt.
*ref*/Ortega JJ, Madero L, Martín G, Verdeguer A, García P, Parody R, et al. Treatment with all-trans retinoic acid and anthracycline monochemotherapy for children with acute promyelocytic leukemia: a multicenter study by the PETHEMA Group. J Clin Oncol. 2005;23(30):7632-40. https://doi.org/b8qqbf.
*ref*/Rego EM, Kim HT, Ruiz-Argüelles GJ, Uriarte Mdel R, Jacomo RH, Gutiérrez-Aguirre H, et al. The impact of medical education and networking on the outcome of leukemia treatment in developing countries. The experience of International Consortium on Acute Promyelocytic Leukemia (IC-APL). Hematology. 2012;17(Suppl 1):S36-8. https://doi.org/f3fc.
*ref*/Colombia. Ministerio de Salud y Protección Social (MinSalud). Guía de práctica clínica para la detección oportuna, diagnóstico y seguimiento de leucemia linfoide aguda y leucemia mieloide aguda en niños, niñas y adolescentes. Para uso de profesionales de salud. Guía No. 9. Bogotá D.C.: MinSalud; 2013 [cited 2019 Oct 20]. Available from: https://bit.ly/399U8Pc.
*ref*/World Medical Association (WMA). WMA Declaration of Helsinki – Ethical principles for medical research involving human subjects. Fortaleza: 64th WMA General Assembly; 2013.
*ref*/Colombia. Ministerio de Salud. Resolución 8430 de 1993 (octubre 4): Por la cual se establecen las normas científicas, técnicas y administrativas para la investigación en salud. Bogotá D.C.; octubre 4 de 1993 [cited 2019 Jul 28]. Available from: https://bit.ly/3lJ1gXE.
*ref*/Aksu T, Fettah A, Bozkaya İO, Baştemur M, Kara A, Çulha VK, et al. Acute Promyelocytic Leukemia in Children: A Single Centre Experience from Turkey. Mediterr J Hematol Infect Dis. 2018;10(1):e2018045. https://doi.org/gdvxpz.
*ref*/Jastaniah W, Alsultan A, Al Daama S, Ballourah W, Bayoumy M, Al-Anzi F, et al. Clinical characteristics and outcome of childhood acute promyelocitic leukemia (APL) in Saudi Arabia: a multicenter SAPHOS leukemia group study. Hematology. 2018;23(6):316-23. https://doi.org/gg74k7.
*ref*/Takahashi H, Watanabe T, Kinoshita A, Yuza Y, Moritake H, Terui K, et al. High event-free survival rate with minimum-dose-anthracycline treatment in childhood acute promyelocytic leukaemia: a nationwide prospective study by the Japanese Paediatric Leukaemia/Lymphoma Study Group. Br J Haematol. 2016;174(3):437-43. https://doi.org/f8zmxf.
*ref*/Lins MM, Mello MJG, Ribeiro RC, De Camargo B, de Fátima Pessoa Militão de Albuquerque M, Thuler LCS. Survival and risk factors for mortality in pediatric patients with acute myeloid leukemia in a single reference center in low-middle-income country. Ann Hematol. 2019;98(6):1403-11. https://doi.org/f3fq.
*ref*/Dorantes-Acosta E, Medina-Sanson A, Jaimes-García Y, López-Martínez B. Clinical features and treatment outcomes of pediatric acute promyelocytic leukemia in a Mexican pediatric hospital. Rev Investig Clin. 2013;65(5):392-8.
*ref*/Lengfelder E, Saussele S, Weisser A, Büchner T, Hehlmann R. Treatment concepts of acute promyelocytic leukemia. Crit Rev Oncol Hematol. 2005;56(2):261-74. https://doi.org/dsrtf4.
*ref*/Sultan S, Irfan SM, Ashar S. Acute Promyelocytic Leukemia: a Single Center Study from Southern Pakistan. Asian Pac J Cancer Prev. 2015;16(17):7893-5. https://doi.org/f3fs.
*ref*/Chen C, Huang X, Wang K, Chen K, Gao D, Qian S. Early mortality in acute promyelocytic leukemia: Potential predictors. Oncol Lett. 2018;15(4):4061-9. https://doi.org/f3ft.
*ref*/McDonnell MH, Smith ET, Lipford EH, Gerber JM, Grunwald MR. Microgranular acute promyelocytic leukemia presenting with leukopenia and an unusual immunophenotype. Hematol Oncol Stem Cell Ther. 2017;10(1):35-8. https://doi.org/f3fv.
*ref*/Orfao A, Chillón MC, Bortoluci AM, López-Berges MC, García-Sanz R, Gonzalez M, et al. The flow cytometric pattern of CD34, CD15 and CD13 expression in acute myeloblastic leukemia is highly characteristic of the presence of PML-RARa gene rearrangements. Haematologica. 1999;84(5):405-12.
*ref*/Montesinos P, Rayón C, Vellenga E, Brunet S, González J, González M, et al. Clinical significance of CD56 expression in patients with acute promyelocytic leukemia treated with all-trans retinoic acid and anthracycline-based regimens. Blood. 2011;117(6):1799-805. https://doi.org/bd4sb7.
*ref*/Ono T, Takeshita A, Kishimoto Y, Kiyoi H, Okada M, Yamauchi T, et al. Expression of CD56 is an unfavorable prognostic factor for acute promyelocytic leukemia with higher initial white blood cell counts. Cancer Sci. 2014;105(1):97-104. https://doi.org/f5rw33. -
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المصدر: reponame:Repositorio Institucional EdocUR; instname:Universidad del Rosario; Costa LF, Yokosawa J, Mantese OC, Oliveira TFM, Silveira HL, Nepomuceno LL, et al. Respiratory viruses in children younger than five years old with acute respiratory disease from 2001 to 2004 in Uberlândia, MG, Brazil. Mem Inst Oswaldo Cruz. mayo de 2006;101(3):301-6.; Williams BG, Gouws E, Boschi-Pinto C, Bryce J, Dye C. Estimates of world-wide distribution of child deaths from acute respiratory infections. Lancet Infect Dis. enero de 2002;2(1):25-32.; Rodríguez-Martínez CE, Rodríguez DA, Nino G. Respiratory syncytial virus, adenoviruses, and mixed acute lower respiratory infections in children in a developing country. J Med Virol. mayo de 2015;87(5):774-81; Pritt BS, Aubry MC. Histopathology of viral infections of the lung. Semin Diagn Pathol. noviembre de 2017;34(6):510-7.; Nair H, Nokes DJ, Gessner BD, Dherani M, Madhi SA, Singleton RJ, et al. Global burden of acute lower respiratory infections due to respiratory syncytial virus in young children: a systematic review and meta-analysis. Lancet. 1 de mayo de 2010;375(9725):1545-55.; Scheltema NM, Gentile A, Lucion F, Nokes DJ, Munywoki PK, Madhi SA, et al. Global respiratory syncytial virus-associated mortality in young children (RSV GOLD): a retrospective case series. Lancet Glob Health. 11 de septiembre de 2017;5(10):e984-91.; Stein RT, Bont LJ, Zar H, Polack FP, Park C, Claxton A, et al. Respiratory syncytial virus hospitalization and mortality: Systematic review and meta-analysis. Pediatr Pulmonol. abril de 2017;52(4):556-69.; Díez-Domingo J, Pérez-Yarza EG, Melero JA, Sánchez-Luna M, Aguilar MD, Blasco AJ, et al. Social, economic, and health impact of the respiratory syncytial virus: a systematic search. BMC Infect Dis [Internet]. 30 de octubre de 2014 [citado 23 de mayo de 2018];14. Disponible en:; Pedraza-Bernal AM, Rodriguez-Martinez CE, Acuña-Cordero R. Predictors of severe disease in a hospitalized population of children with acute viral lower respiratory tract infections. J Med Virol. mayo de 2016;88(5):754-9.; Caballero MT, Serra ME, Acosta PL, Marzec J, Gibbons L, Salim M, et al. TLR4 genotype and environmental LPS mediate RSV bronchiolitis through Th2 polarization. J Clin Invest. febrero de 2015;125(2):571-82.; Rodríguez DA, Rodríguez-Martínez CE, Cárdenas AC, Quilaguy IE, Mayorga LY, Falla LM, et al. Predictors of severity and mortality in children hospitalized with respiratory syncytial virus infection in a tropical region. Pediatr Pulmonol. marzo de 2014;49(3):269-76.; Análisis de Situación de Salud (ASIS) [Internet]. [citado 23 de mayo de 2018]. Disponible en:; Medina M. La Asamblea General adopta la Agenda 2030 para el Desarrollo Sostenible [Internet]. Desarrollo Sostenible. 2015 [citado 23 de mayo de 2018]. Disponible en:; Escobar JA, Dover AS, Dueñas A, Leal E, Medina P, Arguello A, et al. Etiology of respiratory tract infections in children in Cali, Colombia. Pediatrics. enero de 1976;57(1):123-30.; Berman S, Duenas A, Bedoya A, Constain V, Leon S, Borrero I, et al. Acute lower respiratory tract illnesses in Cali, Colombia: a two-year ambulatory study. Pediatrics. febrero de 1983;71(2):210-8.; Herrera-Rodríguez DH, de la Hoz F, Mariño C, Ramírez E. Virus Respiratorios en Menores de Diez Años con Infección Respiratoria en el Hospital Militar Central de Bogotá 2000-2001. Rev Salud Pública. diciembre de 2007;9:576-86.; CARDOZO LDP. PREVALENCIA DE VIRUS SINCITIAL RESPIRATORIO Y ADENOVIRUS EN UN GRUPO DE NIÑOS MENORES DE DOS AÑOS DE LA UNIDAD PEDIATRICA DE LOS ANDES. :38. Repositorio Universidad Javeriana.2013;27-05; García CMG. Caracterización epidemiológica de la infección respiratoria aguda grave y circulación viral en Boyacá, Julio de 2012 a Julio de 2013. 2014;85; Bedoya VI, Abad V, Trujillo H. Frequency of respiratory syncytial virus in hospitalized infants with lower acute respiratory tract infection in Colombia. Pediatr Infect Dis J. diciembre de 1996;15(12):1123-4.; Piñeros JG, Baquero H, Bastidas J, García J, Ovalle O, Patiño CM, et al. Respiratory syncytial virus infection as a cause of hospitalization in population under 1 year in Colombia. J Pediatr (Rio J). diciembre de 2013;89(6):544-8.; Nolan T, Borja-Tabora C, Lopez P, Weckx L, Ulloa-Gutierrez R, Lazcano-Ponce E, et al. Prevalence and Incidence of Respiratory Syncytial Virus and Other Respiratory Viral Infections in Children Aged 6 Months to 10 Years With Influenza-like Illness Enrolled in a Randomized Trial. Clin Infect Dis Off Publ Infect Dis Soc Am. 1 de junio de 2015;60(11):e80-89.; Barbosa J, Parra B, Alarcón L, Quiñones FI, López E, Franco MA. Prevalencia y periodicidad del virus sincitial respiratorio en Colombia. Rev Acad Colomb Cienc Exactas Físicas Nat. 12 de enero de 2018;41(161):435.; Pinto LA, DE Azeredo Leitão LA, Mocellin M, Acosta P, Caballero MT, Libster R, et al. IL-8/IL-17 gene variations and the susceptibility to severe viral bronchiolitis. Epidemiol Infect. marzo de 2017;145(4):642-6.; Zanone SM, Krause LK, Madhi SA, Bassat Q, Jha P, Simões EAF, et al. Challenges in estimating RSV-associated mortality rates. Lancet Respir Med. mayo de 2016;4(5):345-7.; Borrero I, Fajardo L, Bedoya A, Zea A, Carmona F, de Borrero MF. Acute respiratory tract infections among a birth cohort of children from Cali, Colombia, who were studied through 17 months of age. Rev Infect Dis. diciembre de 1990;12 Suppl 8:S950-956.; Chi H, Chang I-S, Tsai F-Y, Huang L-M, Shao P-L, Chiu N-C, et al. Epidemiological study of hospitalization associated with respiratory syncytial virus infection in Taiwanese children between 2004 and 2007. J Formos Med Assoc Taiwan Yi Zhi. junio de 2011;110(6):388-96.; Bockova J, O’Brien KL, Oski J, Croll J, Reid R, Weatherholtz RC, et al. Respiratory syncytial virus infection in Navajo and White Mountain Apache children. Pediatrics. agosto de 2002;110(2 Pt 1):e20.; Rossi GA, Medici MC, Arcangeletti MC, Lanari M, Merolla R, Paparatti UDL, et al. Risk factors for severe RSV-induced lower respiratory tract infection over four consecutive epidemics. Eur J Pediatr. diciembre de 2007;166(12):1267-72.; Kristensen K, Stensballe LG, Bjerre J, Roth D, Fisker N, Kongstad T, et al. Risk factors for respiratory syncytial virus hospitalisation in children with heart disease. Arch Dis Child. octubre de 2009;94(10):785-9.; El Saleeby CM, Bush AJ, Harrison LM, Aitken JA, Devincenzo JP. Respiratory syncytial virus load, viral dynamics, and disease severity in previously healthy naturally infected children. J Infect Dis. 1 de octubre de 2011;204(7):996-1002.; Geoghegan S, Erviti A, Caballero MT, Vallone F, Zanone SM, Losada JV, et al. Mortality due to Respiratory Syncytial Virus. Burden and Risk Factors. Am J Respir Crit Care Med. 1 de enero de 2017;195(1):96-103.; High M, Cho H-Y, Marzec J, Wiltshire T, Verhein KC, Caballero MT, et al. Determinants of host susceptibility to murine respiratory syncytial virus (RSV) disease identify a role for the innate immunity scavenger receptor MARCO gene in human infants. EBioMedicine. septiembre de 2016;11:73-84.; Simões EAF, Bont L, Manzoni P, Fauroux B, Paes B, Figueras-Aloy J, et al. Past, Present and Future Approaches to the Prevention and Treatment of Respiratory Syncytial Virus Infection in Children. Infect Dis Ther. marzo de 2018;7(1):87-120.; Lynch JP, Kajon AE. Adenovirus: Epidemiology, Global Spread of Novel Serotypes, and Advances in Treatment and Prevention. Semin Respir Crit Care Med. agosto de 2016;37(4):586-602.; Wang Y-F, Shen F-C, Wang S-L, Kuo P-H, Tsai H-P, Liu C-C, et al. Molecular Epidemiology and Clinical Manifestations of Adenovirus Respiratory Infections in Taiwanese Children. Medicine (Baltimore). mayo de 2016;95(18):e3577.; Akhil C, Suresha PG, Sabeena S, Hindol M, Arunkumar G. Genotyping of human adenoviruses circulating in Southwest India. Virusdisease. septiembre de 2016;27(3):266-70.; Molloy CT, Andonian JS, Seltzer HM, Procario MC, Watson ME, Weinberg JB. Contributions of CD8 T cells to the pathogenesis of mouse adenovirus type 1 respiratory infection. Virology. 11 de abril de 2017;507:64-74.; Scotta MC, Mattiello R, Marostica PJC, Jones MH, Martins LG, Fischer GB. Risk factors for need of mechanical ventilation in children with influenza A(H1N1)pdm09. J Pediatr (Rio J). octubre de 2013;89(5):444-9.; Kondrich J, Rosenthal M. Influenza in children. Curr Opin Pediatr. 24 de marzo de 2017;; DIAZMARTINEZ I, DIAZ AG. FRECUENCIA DE INFECCIÓN POR VIRUS SINCITIAL RESPIRATORIO Y VIRUS INFLUENZA Y SU RELACIÓN CON CARACTERÍSTICAS CLÍNICO-RADIOLÓGICAS Y SOCIODEMOGRÁFICAS ASOCIADAS. :75.; Benchekroun I, Boubkraoui MEM, Mekaoui N, Karboubi L, Mahraoui C, Dakhama BSB. [Epidemiological profile of respiratory diseases in children hospitalized at the Rabat Children’s Hospital, Morocco]. Pan Afr Med J. 2017;28:288.; Nino CL, Perez GF, Isaza N, Gutierrez MJ, Gomez JL, Nino G. Characterization of Sex-Based Dna Methylation Signatures in the Airways During Early Life. Sci Rep. 3 de abril de 2018;8(1):5526.; Shi T, Balsells E, Wastnedge E, Singleton R, Rasmussen ZA, Zar HJ, et al. Risk factors for respiratory syncytial virus associated with acute lower respiratory infection in children under five years: Systematic review and meta–analysis. J Glob Health [Internet]. [citado 11 de mayo de 2018];5(2). Disponible en:; Dixon D-L. The Role of Human Milk Immunomodulators in Protecting Against Viral Bronchiolitis and Development of Chronic Wheezing Illness. Child Basel Switz. 7 de julio de 2015;2(3):289-304.
مصطلحات الفهرس: Infecciones del tracto respiratorio, Virus respiratorios Sincitiales, Infecciones por Adenoviridae, Influenza, Unidades de cuidado respiratorio, 616, Virus de la influenza, Oxígeno, Respiratory Tract Infections, Respiratory Syncytial Viruses, Adenoviridae Infections, Human, Respiratory Care Units, Oxygen, info:eu-repo/semantics/bachelorThesis, info:eu-repo/semantics/acceptedVersion
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10
المؤلفون: Aponte Barrios, Nelson Hernando
المساهمون: Sarmiento, Isabel (Thesis advisor), Uribe, Gloria Inés (Thesis advisor), Linares Ballesteros, Teresa Adriana
مصطلحات موضوعية: Indices plaquetarios, Ancho de distribución plaquetario, 51 Matemáticas / Mathematics, Porcentaje de plaquetas grandes, Mean platelet volume, 61 Ciencias médicas, Medicina / Medicine and health, Platelet indices, Platelet large cell ratio, Volumen de distribución plaquetario, Trombocitopenia, Thrombocytopenia, Platelet distribution width
وصف الملف: application/pdf
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11Academic Journal
المؤلفون: Villadiego García, Vinyelis Verena
المساهمون: Linares Ballesteros, Teresa Adriana, Aponte Barrios, Nelson Hernando, Grupo de Investigación en Hematología Clínica
مصطلحات موضوعية: 618 - Ginecología, obstetricia, pediatría, geriatría, Trombocitopenia inmune primaria (PTI), Inmunoglobulina G, Corticoides, Primary immune thrombocytopenia (ITP), Corticosteroids, Immunoglobulin G
وصف الملف: 1 recurso en línea (29 páginas); application/pdf
Relation: Neunert C, Lim W, Crowther M, Cohen A, Solberg L, Crowther MA. The American Society of Hematology 2011 evidence-based practice guideline for immune thrombocytopenia. Blood. 2011;117(16):4190–207.; Kühne T. Diagnosis and management of immune thrombocytopenia in childhood. Hamostaseologie. 2017;37(1):36–44.; Grimaldi-Bensouda L, Nordon C, Leblanc T, Abenhaim L, Allali S, Armari-Alla C, et al. Childhood immune thrombocytopenia: A nationwide cohort study on condition management and outcomes. Pediatr Blood Cancer. 2017;64(7):1–8.; Yong M, Schoonen WM, Li L, Kanas G, Coalson J, Mowat F, et al. Epidemiology of paediatric immune thrombocytopenia in the General Practice Research Database. Br J Haematol. 2010;149(6):855–64.; Perera M, Garrido T. Advances in the pathophysiology of primary immune thrombocytopenia. Hematology. 2017;22(1):41–53.; Semple JW, Aslam R, Kim M, Speck ER, Freedman J. Brief report Platelet-bound lipopolysaccharide enhances Fc receptor – mediated phagocytosis of IgG-opsonized platelets - Hematology - 2007.pdf. 2018;109(11):4803–6.; Investigaci GDE, Oncohematolog DE, Unal T. De Trombocitopenia Inmune Primaria ( Pti ) En Población Pediátrica. 2018; Rodeghiero F, Stasi R, Gernsheimer T, Michel M, Provan D, Arnold DM, et al. Standardization of terminology, definitions and outcome criteria in immune thrombocytopenic purpura of adults and children: Report from an international working group. Blood. 2009;113(11):2386–93.; Sanz-Alonso M.A VG V. Directrices de diagnóstico, tratamiento y seguimiento de la PTI [Internet]. Vols. 249-1o, Sociedad Española de Pediatría y Hematología. Barcelona. 2011. 49 p. Available from: http://www.sehh.es/documentos/40/Guia PTI.pdf; Provan D, Stasi R NA et al. International consensus report on the investigation and management of primary immune thrombocytopenia Drew. Blood. 2010;115(2):168–87.; Kuter BJ, Brown M, Wiedmann RT, Hartzel J, Musey L. Safety and immunogenicity of M-M-RII (Combination Measles-Mumps-Rubella Vaccine) in clinical trials of healthy children conducted between 1988 and 2009. Pediatr Infect Dis J. 2016;35(9):1011–20.; Villadiego García, V. V. (2020). Trombocitopenia Inmune Primaria (PTI) en un hospital de referencia de Bogotá Colombia de diciembre de 2018 a agosto de 2020 [Tesis de especialidad, Universidad Nacional de Colombia]. Repositorio Institucional; https://repositorio.unal.edu.co/handle/unal/79221
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12
المؤلفون: Ramirez Sanchez, Laura Marcela
المساهمون: Olaya Morales, Natalia, Quintero Canasto, Edna Margarita, Aponte Barrios, Nelson Hernando Asesor metododlógico, Grupo de investigación de Oncohematología pediátrica
مصطلحات موضوعية: Data Analysis, biopsia de médula ósea, Pathology, Clinical, Aspirado de médula ósea, Análisis de datos, Leucemia linfoblástica aguda, ALL-IC 2009, Acute lymphoblastic leukemia, Bone marrow biopsy, Patología clínica, Bone marrow aspirate, 611 - Anatomía humana, citología, histología [610 - Medicina y salud], Flow cytometry, Citometría de flujo
وصف الملف: xii, 27 páginas; application/pdf
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13Dissertation/ Thesis
المؤلفون: Ramirez Sanchez, Laura Marcela
المساهمون: Olaya Morales, Natalia, Quintero Canasto, Edna Margarita, Aponte Barrios, Nelson Hernando Asesor metododlógico, Grupo de investigación de Oncohematología pediátrica
مصطلحات موضوعية: 610 - Medicina y salud::611 - Anatomía humana, citología, histología, Patología clínica, Análisis de datos, Pathology, Clinical, Data Analysis, Leucemia linfoblástica aguda, biopsia de médula ósea, Aspirado de médula ósea, Citometría de flujo, ALL-IC 2009, Acute lymphoblastic leukemia, Bone marrow biopsy, Bone marrow aspirate, Flow cytometry
وصف الملف: xii, 27 páginas; application/pdf
Relation: Steven H. Swerdlow, Elias Campo, Nancy Lee Harris, Elaine S. Jaffe, Stefano A. Pileri, Harald Stein, et al. WHO Classification of Tumours of Haematopoietic; Lymphoid Tissues 4ed. Lyon: International Agency for Research on Cancer (IARC) 2017. p. 200; Ortiz-Hidalgo C. Historia y filosofía [Internet]. Medigraphic.com. [citado el 26 de enero de 2022]. Disponible en: https://www.edigraphic.com/pdfs/patrevlat/rlp-2013/rlp131l.pdf; Cancer today [Internet]. Iarc.fr. [cited 2022 Jan 26]. Available from: https://gco.iarc.fr/today/online-analysis-multi-bars; Syed Z. ali, MD [Internet]. Pathcme.com. [cited 2022 Jan 26]. Available from: https://www.pathcme.com/wp-content/uploads/2019/09/SY; Instituto Nacional de Salud. Boletín epidemiológico semanal 05 de 2021. Boletín epidemiológico semanal [Internet]. 2021;1–29. Disponible en: http://dx.doi.org/10.33610/23576189.2021.05; Inaba H, Pui C-H. Advances in the diagnosis and treatment of pediatric acute lymphoblastic leukemia. J Clin Med [Internet]. 2021;10(9):1926. Available from: http://dx.doi.org/10.3390/jcm10091926; 8. Sarmiento-Urbina IC, Linares-Ballesteros A, Contreras-Acosta A, Cabrera-Bernal EV, Pardo-González CA, Uribe-Botero GI, Aponte-Barrios NH. Resultados del Protocolo ACHOP 2006 en los niños con leucemia linfoblástica aguda en la Fundación HOMI Hospital de la Misericordia de Bogotá, en el periodo 2007 – 2012. Iatreia. 2019 Abr-Jun; 32(2):71-81. DOI 10.17533/udea.iatreia.07; Ozaeta D., Casallas A., Martínez L, Castillo A., Baquero O., Cobos O. Supervivencia de los niños con Leucemia Linfoide Aguda manejados con protocolo Basado en ALL-IC-BFM 2009 en Bogotá D.C. Colombia. Pediatr. 2021;53(4): 145-152; Nature.com. [cited 2022 Jan 27]. Available from: https://www.nature.com/articles/s41568-018-0015-6.pdf; Inaba H, Mullighan CG. Pediatric acute lymphoblastic leukemia. Haematologica [Internet]. 2020 [citado el 27 de enero de 2022];105(11):2524–39. Disponible en: https://haematologica.org/article/view/haematol.2020.247031; Gob.mx:8180. [citado el 28 de enero de 2022]. Disponible en: http://repositorio.pediatria.gob.mx:8180/bitstream/20.500.12103/98/1/tesis2014_03.pdf; Proytcheva M. Bone marrow evaluation for pediatric patients. Int J Lab Hematol [Internet]. 2013;35(3):283–9. Disponible en: http://dx.doi.org/10.1111/ijlh.12073; Lee S-H, Erber WN, Porwit A, Tomonaga M, Peterson LC, International Council for Standardization In Hematology. ICSH guidelines for the standardization of bone marrow specimens and reports. Int J Lab Hematol [Internet]. 2008 [citado el 28 de enero de 2022];30(5):349–64. Disponible en: https://pubmed.ncbi.nlm.nih.gov/18822060/; Biopsia de la médula ósea: perspectiva clínico-patológica - 2a edición actualizada -2017 [Internet]. Sehh.es. [citado el 28 de enero de 2022]. Disponible en: https://www.sehh.es/servicios-para-los-socios/447-documentos/manuales/122794-biopsia-de-la-medula-osea-perspectiva-clinico-patologica-2-edicion-actualizada-2017; Ortiz-Hidalgo C, Delgado-Soler L, Lara-Torres C. Interpretación de la biopsia de médula ósea: el informe histopatológico básico, actualizado. Patología Rev Latinoam. 2017;55(1):52-73; Gorczyca W. Atlas of differential diagnosis in neoplastic hematopathology. Boca Raton: CRC Press; 2021; Kruse A, Abdel-Azim N, Kim HN, Ruan Y, Phan V, Ogana H, et al. Minimal residual disease detection in acute lymphoblastic leukemia. Int J Mol Sci [Internet]. 2020 [citado el 29 de enero de 2022];21(3):1054. Disponible en: https://www.mdpi.com/1422-0067/21/3/1054; Campbell M, Castillo L, Janic D, Belgrad S, Konja J, Kovacs G, et al. A randomized trial of the I-BFM-SG for the management of childhood non-B acute lymphoblastic leukemia [Internet]. Bialaczka.org. 2009 [citado el 30 de enero de 2022]. Disponible en: http://www.bialaczka.org/wp-content/uploads/2016/10/ALLIC_BFM_2009.pdf; Nunes V, Cazzaniga G, Biondi A. An update on PCR use for minimal residual disease monitoring in acute lymphoblastic leukemia. Expert Rev Mol Diagn [Internet]. 2017;17(11):953–63. Disponible en: http://dx.doi.org/10.1080/14737159.2017.1377073; 21. Behjati S, Tarpey PS. What is next generation sequencing? Arch Dis Child Educ Pract Ed [Internet]. 2013 [citado el 30 de enero de 2022];98(6):236–8. Disponible en: https://www.ncbi.nlm.nih.gov/labs/pmc/articles/PMC3841808/; Gupta S, Devidas M, Loh ML, Raetz EA, Chen S, Wang C, et al. Flow cytometric vs morphologic assessment of remission in childhood acute lymphoblastic leukemia: A report from the Children’s Oncology Group (COG). Leukemia [Internet]. 2017; Disponible en: http://dx.doi.org/10.1038/leu.2017.341; Donald A, Shouhao Z, Howard H. Association of Minimal Residual Disease With Clinical Outcome in Pediatric and Adult Acute Lymphoblastic Leukemia A Meta-analysis. JAMA Oncology. [Internet]. 2017; Disponible en: https://pubmed.ncbi.nlm.nih.gov/28494052; Rathe M, Preiss B, Vibeke H, et al. Minimal residual disease monitoring cannot fully replace bone marrow morphology in assessing disease status in pediatric acute lymphoblastic leukemia. AMPIS [Internet]. 2020 Disponible en: https://pubmed.ncbi.nlm.nih.gov/32108963/; Pavithra A, Rakhee K, Biswajit D, et al. Post-chemotherapy Changes in Bone Marrow in Acute Leukemia With Emphasis on Detection of Residual Disease by Immunohistochemistry. CUREUS [Internet]. 2021 Disponible en: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8725173/; https://repositorio.unal.edu.co/handle/unal/84137; Universidad Nacional de Colombia; Repositorio Institucional Universidad Nacional de Colombia; https://repositorio.unal.edu.co/
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14Dissertation/ Thesis
المؤلفون: Niño Quiroga, Laura Isabel
المساهمون: Linares Ballesteros, Adriana, Yunis Londoño, Juan José, García Medina Johnny Francisco, Yunis Hazbún Luz Karime, Aponte Barrios Nelson Hernando
مصطلحات موضوعية: 610 - Medicina y salud::618 - Ginecología, obstetricia, pediatría, geriatría, Leucemia Mieloide, Leukemia, Myeloid, Recurrencia, Recurrence, Leucemia mieloide aguda, Niños, Supervivencia, Tratamiento, Tasa de recaída, Muerte relacionada con tratamiento, Child, Survival, Treatment, Treatment-related death
وصف الملف: 1 recurso en línea (73 páginas); application/pdf
Relation: PUI, Ching-Hon (ed.). Childhood leukemias. Cambridge university press, 2012.; Xie S, Hossain J. Survival di ff erences in childhood and young adult acute myeloid leukemia : A cross-national study using US and England data. Cancer Epidemiol. 2018;54(March):19-24. doi:10.1016/j.canep.2018.03.001; Susan E. Puumala, PhD, Julie A. Ross, PhD, Richard Aplenc, MD, PhD, and Logan G. Spector P. Epidemiology of Childhood Acute Myeloid Leukemia. Pediatr Blood Cancer. 2013;(60):728–733. doi:DOI 10.1002/pbc.24464; De Moor JS, Mariotto AB, Parry C, et al. Cancer survivors in the united states: Prevalence across the survivorship trajectory and implications for care. Cancer Epidemiol Biomarkers Prev. 2013;22(4):561-570. doi:10.1158/1055-9965.EPI-12-1356; Lins MM, Julia M, Mello G, Ribeiro RC, Camargo B De, Fátima M De. Survival and risk factors for mortality in pediatric patients with acute myeloid leukemia in a single reference center in low – middle-income country. 2019.; Vardiman JW, Arber DA, Orazi A, et al. The 2016 revision to the World Health Organization classi fi cation of myeloid neoplasms and acute leukemia. Blood. 2016;127(20):2391-2406. doi:10.1182/blood-2016-03-643544.The; Papaemmanuil E, Gerstung M, Bullinger L, et al. Genomic Classification and Prognosis in Acute Myeloid Leukemia. N Engl J Med. 2016;374(23):2209-2221. doi:10.1056/NEJMoa1516192; Gamis AS, Alonzo TA, Meshinchi S, et al. Gemtuzumab Ozogamicin in Children and Adolescents With De Novo Acute Myeloid Leukemia Improves Event-Free Survival by Reducing Relapse Risk: Results From the Randomized Phase III Children’s Oncology Group Trial AAML0531. J Clin Oncol. 2014;32(27):3021-3032. doi:10.1200/JCO.2014.55.3628; Creutzig U, Heuvel-eibrink MM Van Den, Gibson B, et al. Diagnosis and management of acute myeloid leukemia in children and adolescents : recommendations from an international expert panel Diagnosis and management of acute myeloid leukemia in children and adolescents : recommendations from an international expert panel. 2012:3187-3205. doi:10.1182/blood-2012-03-362608; Upadhyay VA, Fathi AT. Induction chemotherapy in acute myeloid leukaemia: Origins and emerging directions. Curr Opin Hematol. 2018;25(2):67-74. doi:10.1097/MOH.0000000000000407; Costo C de alto. Situación Del Cáncer En La Población Pediatrica Atendida En El SGSSS de Colombia.; 2017. https://cuentadealtocosto.org/site/images/Libro_Situacion_Cancer_Pediatrico_2017.pdf.; Taga T, Tomizawa D, Takahashi H, Adachi S. Acute myeloid leukemia in children: Current status and future directions. Pediatr Int. 2016;58(2):71-80. doi:10.1111/ped.12865; Revista Colombiana de Cancerología. 2020;24(2):72-79.; Isabel M, Rumilla V, Ballesteros AL, et al. Pediatric Research and Child Health Signs , Symptoms and Findings in Complete Blood Cell Count at Diagnosis in Children with Acute Leukemia. 2018;1(1).; Johnston DL, Woods WG, Alonzo TA, et al. Central nervous system disease in pediatric acute myeloid leukemia : A report from the Children ’ s Oncology Group. 2017;(January):1-9. doi:10.1002/pbc.26612; Jaime-pérez JC, Padilla-medina JR, Fernández LT, et al. Outcomes of Adolescents and Young Adults With Acute Myeloid Leukemia Treated in a Single Latin American Center. Clin Lymphoma, Myeloma Leuk. 2018:1-7. doi:10.1016/j.clml.2018.02.002; Ofran Y, Rowe JM. Introducing minimal residual disease in acute myeloid leukemia. Curr Opin Hematol. 2015;22(2):139-145. doi:10.1097/MOH.0000000000000113; Ossenkoppele G, Schuurhuis GJ. MRD in AML : does it already guide therapy decision-making ? :356-365.; Loken MR, Alonzo TA, Pardo L, et al. Residual disease detected by multidimensional flow cytometry signifies high relapse risk in patients with de novo acute myeloid leukemia : a report from Children ’ s Oncology Group. 2012;120(8):1581-1588. doi:10.1182/blood-2012-02-408336.; Rubnitz JE, Inaba H, Dahl G, et al. Minimal residual disease-directed therapy for childhood acute myeloid leukaemia: Results of the AML02 multicentre trial. Lancet Oncol. 2010;11(6):543-552. doi:10.1016/S1470-2045(10)70090-5; Article O. Early assessment of minimal residual disease in AML by flow cytometry during aplasia identifies patients at increased risk of relapse. 2014;(January):1-10. doi:10.1038/leu.2014.186; Creutzig U, Van Den Heuvel-Eibrink MM, Gibson B, et al. Diagnosis and management of acute myeloid leukemia in children and adolescents: Recommendations from an international expert panel. Blood. 2012;120(16):3167-3205. doi:10.1182/blood-2012-03-362608; Horan JT, Alonzo TA, Lyman GH, et al. Impact of disease risk on efficacy of matched related bone marrow transplantation for pediatric acute myeloid leukemia: The Children’s Oncology Group. J Clin Oncol. 2008;26(35):5797-5801. doi:10.1200/JCO.2007.13.5244; Klein K, Dors N, Tissing WJE, et al. Causes of early death and treatment-related death in newly diagnosed pediatric acute myeloid leukemia : Recent experiences of the Dutch Childhood Oncology Group. 2019;(November):1-10. doi:10.1002/pbc.28099; Bochennek K, Hassler A, Perner C, et al. Infectious complications in children with acute myeloid leukemia : decreased mortality in multicenter trial. 2016;(November 2015):8-11. doi:10.1038/bcj.2015.110; Creutzig U, Zimmermann M. Longitudinal Evaluation of Early and Late Anthracycline Cardiotoxicity in Children With AML. 2007;(July 2006):651-662. doi:10.1002/pbc; https://repositorio.unal.edu.co/handle/unal/79411; Universidad Nacional de Colombia; Repositorio Institucional Universidad Nacional de Colombia; https://repositorio.unal.edu.co/
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15Dissertation/ Thesis
المؤلفون: Chavarriaga Ruíz, Nataly, Estupiñan Calvache, Marcela, Vallejo Rosero, Cristian, Castañeda Figueroa, Ana Maria
المساهمون: Aponte Barrios, Nelson Hernando
المصدر: instname:Universidad del Rosario
مصطلحات موضوعية: Trasplante de progenitores hematopoyéticos PH, Trasplante alogénico, Niños, Trombocitopenia, Pronóstico, Sobrevida, Enfermedad injerto contra huésped EICH, Enfermedades, Hematopoietic Stem Cell Transplantation, Thrombocytopenia, Prognosis, Survival Analysis, Graft vs Host Disease, Homologous, Transplantation
وصف الملف: application/pdf