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Gene Yong-Kwang Ong Nicola Ngiam Lai Peng Tham Yee Hui Mok Jacqueline SM Ong Khai Pin Lee Sashikumar Ganapathy Shu-Ling Chong Jen Heng Pek Su Yah Chew Yang Chern Lim Germac Qiaoyue Shen Jade Kua Josephine Tan Kee Chong Ng 《Singapore medical journal》2021,62(8):372
We present the 2021 Singapore Paediatric Resuscitation Guidelines. The International Liaison Committee on Resuscitation’s Pediatric Taskforce Consensus Statements on Science and Treatment Recommendations, which was published in October 2020, and the updated resuscitation guidelines from the American Heart Association and European Resuscitation Council, were reviewed and discussed by the committee. These recommendations were derived after deliberation of peer-reviewed evidence updates on paediatric resuscitation and took into consideration the local setting and clinical practice. 相似文献
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Adriano Caixeta MD PhD Martin B. Leon MD Alexandra J. Lansky MD Eugenia Nikolsky MD PhD Jiro Aoki MD PhD Jeffrey W. Moses MD Joachim Schofer MD Marie-Claude Morice MD Erick Schampaert MD Ajay J. Kirtane MD SM Jeffrey J. Popma MD Helen Parise DSc Martin Fahy MSc Roxana Mehran MD 《Journal of the American College of Cardiology》2009,54(10):894-902
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BACKGROUND: Cellular blood components are irradiated to prevent graft- versus-host disease in transfusion recipients at risk for this syndrome. Because gamma radiation can result in the production of reactive oxygen species, the role of reactive oxygen species was investigated in radiation-induced red cell damage. STUDY DESIGN AND METHODS: Whole blood from normal donors was exposed to various doses of t-butyl hydroperoxide (0-1 mM) and/or to gamma-radiation (0-50 Gy). Oxidative damage was assessed by the extent of lipid peroxidation (measured by thiobarbituric acid-reactive substances [TBARS]) and hemoglobin oxidation. Fresh blood was divided into three parts-one initially irradiated and stored, another stored with portions irradiated weekly, and a third stored without irradiation. TBARS and hemoglobin oxidation were measured weekly. RESULTS: As expected, t- butyl hydroperoxide induced TBARS formation and hemoglobin oxidation in a dose-dependent fashion. The gamma-radiation not only increased hemoglobin oxidation and TBARS formation, but also enhanced the t-butyl hydroperoxide effect on red cells. Red cell storage increased TBARS generation and hemoglobin oxidation in a time-dependent fashion. When radiation was administered either initially or after weekly storage, TBARS production and hemoglobin oxidation were increased over that measured in unirradiated paired controls. CONCLUSION: Gamma radiation at clinically used doses increases lipid peroxidation and hemoglobin oxidation in human red cells. The effect of gamma-radiation is accentuated by blood storage and induces damage independent of time of storage. 相似文献