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Optimal Management of the Critically 111: Anaesthesia, Monitoring, Data Capture, and Point-of-Care Technological Practices in Ovine Models of Critical Care

机译:关键111的最佳管理:绵羊重症监护模型中的麻醉,监测,数据采集和现场护理技术实践

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摘要

Animal models of critical illness are vital in biomedical research. They provide possibilities for the investigation of pathophysiologi-cal processes that may not otherwise be possible in humans. In order to be clinically applicable, the model should simulate the critical care situation realistically, including anaesthesia, monitoring, sampling, utilising appropriate personnel skill mix, and therapeutic interventions. There are limited data documenting the constitution of ideal technologically advanced large animal critical care practices and all the processes of the animal model. In this paper, we describe the procedure of animal preparation, anaesthesia induction and maintenance, physiologic monitoring, data capture, point-of-care technology, and animal aftercare that has been successfully used to study several novel ovine models of critical illness. The relevant investigations are on respiratory failure due to smoke inhalation, transfusion related acute lung injury, endotoxin-induced proteogenomic alterations, haemorrhagic shock, septic shock, brain death, cerebral microcirculation, and artificial heart studies. We have demonstrated the functionality of monitoring practices during anaesthesia required to provide a platform for undertaking systematic investigations in complex ovine models of critical illness.
机译:重大疾病的动物模型在生物医学研究中至关重要。它们为病理生理过程的研究提供了可能性,而这在人类中是不可能的。为了在临床上可行,该模型应现实地模拟重症监护情况,包括麻醉,监测,取样,利用适当的人员技能组合和治疗干预措施。有限的数据记录了理想的技术先进的大型动物重症监护措施的组成以及动物模型的所有过程。在本文中,我们描述了动物制备,麻醉诱导和维持,生理监测,数据采集,现场护理技术和动物后期护理的程序,这些程序已成功用于研究几种重大疾病的新型绵羊模型。相关研究涉及因吸入烟,与输血相关的急性肺损伤,内毒素引起的蛋白基因组改变,出血性休克,败血性休克,脑死亡,脑微循环和人工心脏研究引起的呼吸衰竭。我们已经展示了麻醉期间监测实践的功能,该功能为在复杂的重症绵羊模型中进行系统研究提供了平台。

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