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心脏骤停的低温治疗

Hypothermia for cardiac arrest.

作者信息

Greer David M

机构信息

Massachusetts General Hospital, ACC 835, 55 Fruit Street, Boston, MA 02114, USA.

出版信息

Curr Neurol Neurosci Rep. 2006 Nov;6(6):518-24. doi: 10.1007/s11910-006-0055-2.

Abstract

Therapeutic hypothermia for cardiac arrest survivors has emerged as a highly effective means of improving neurologic outcome. There are a number of purported mechanisms by which it is felt to be effective, but the exact mechanism is unknown. This article reviews the biochemical mechanisms of injury occurring in cardiac arrest, as well as the avenues that hypothermia takes to combat this injury. It also reviews the animal model data in support of this, as well as the newer animal studies that may help to improve the field. Several human studies of hypothermia in cardiac arrest have been performed, and this article reviews these for their methods and shortcomings. Our currently recommended guidelines for performing therapeutic hypothermia are presented. With therapeutic hypothermia comes potential risks to the patient, primarily affecting cardiac, metabolic, and hematologic systems, and these risks and their management are discussed. Multiple methods of cooling exist, including selective cranial as well as systemic cooling by internal or external approaches. Finally, the article discusses the current research in the field of hypothermia for cardiac arrest and implications for future practice.

摘要

对心脏骤停幸存者进行治疗性低温已经成为改善神经学转归的一种高效方法。人们认为它有效的机制有很多,但确切机制尚不清楚。本文回顾了心脏骤停时发生损伤的生化机制,以及低温对抗这种损伤的途径。还回顾了支持此观点的动物模型数据,以及可能有助于推动该领域发展的最新动物研究。已经开展了几项关于心脏骤停低温治疗的人体研究,本文对这些研究的方法和不足进行了回顾。文中介绍了我们目前推荐的进行治疗性低温的指南。治疗性低温会给患者带来潜在风险,主要影响心脏、代谢和血液系统,本文将讨论这些风险及其管理方法。存在多种降温方法,包括选择性脑部降温以及通过内部或外部途径进行全身降温。最后,本文讨论了心脏骤停低温治疗领域的当前研究以及对未来实践的影响。

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