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烧伤患者的闭环与决策辅助复苏

Closed-loop and decision-assist resuscitation of burn patients.

作者信息

Salinas Jose, Drew Guy, Gallagher James, Cancio Leopoldo C, Wolf Steven E, Wade Charles E, Holcomb John B, Herndon David N, Kramer George C

机构信息

U.S. Army Institute of Surgical Research, Fort Sam Houston, TX 78234-6315, USA.

出版信息

J Trauma. 2008 Apr;64(4 Suppl):S321-32. doi: 10.1097/TA.0b013e31816bf4f7.

Abstract

Effective resuscitation is critical in reducing mortality and morbidity rates of patients with acute burns. To this end, guidelines and formulas have been developed to define infusion rates and volume requirements during the first 48 hours postburn. Even with these standardized resuscitation guidelines, however, over- and under-resuscitation are not uncommon. Two approaches to adjust infusion rate are decision-assist and closed-loop algorithms based on levels of urinary output. Specific decision assist guidelines or a closed-loop system using computer-controlled feedback technology that supplies automatic control of infusion rates can potentially achieve better control of urinary output. In a properly designed system, closed-loop control has the potential to provide more accurate titration rates, while lowering the incidence of over- and under-resuscitation. Because the system can self-adjust based on monitoring inputs, the technology can be pushed to environments such as combat zones where burn resuscitation expertise is limited. A closed-loop system can also assist in the management of mass casualties, another scenario in which medical expertise is often in short supply. This article reviews the record of fluid balance of contemporary burn resuscitation and approaches, as well as the engineering efforts, animal studies, and algorithm development of our most recent autonomous systems for burn resuscitation.

摘要

有效的复苏对于降低急性烧伤患者的死亡率和发病率至关重要。为此,已制定了指南和公式来确定烧伤后48小时内的输液速度和液体需求量。然而,即便有这些标准化的复苏指南,复苏过度和不足的情况仍并不罕见。调整输液速度的两种方法是基于尿量水平的决策辅助和闭环算法。特定的决策辅助指南或使用计算机控制反馈技术的闭环系统,该技术可自动控制输液速度,有可能更好地控制尿量。在设计合理的系统中,闭环控制有可能提供更精确的滴定速度,同时降低复苏过度和不足的发生率。由于该系统可根据监测输入进行自我调整,因此该技术可应用于烧伤复苏专业知识有限的战区等环境。闭环系统还可协助管理大规模伤亡事件,在这种情况下医疗专业知识往往也很匮乏。本文回顾了当代烧伤复苏的液体平衡记录和方法,以及我们最新的烧伤复苏自主系统的工程努力、动物研究和算法开发。

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