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在模拟环境中的危急事件期间使用手持式计算机化决策辅助工具时的CRNA表现:一项方法学探究。

CRNA performance using a handheld, computerized, decision-making aid during critical events in a simulated environment: a methodologic inquiry.

作者信息

Coopmans Vicki C, Biddle Chuck

机构信息

Nurse Anesthesia Program, Barnes-Jewish College of Nursing, St Louis, Missouri, USA.

出版信息

AANA J. 2008 Feb;76(1):29-35.

Abstract

Directives to improve patient outcomes and enhance safety within the healthcare system have led to development of technologies to assist practitioners in a variety of activities. The purpose of this study was to explore and evaluate a method for examining the effect of computer-assisted decision making (CADM) using a handheld device on the accuracy (ie, correct diagnosis and treatment) and speed of problem solving by Certified Registered Nurse Anesthetists (CRNAs) during simulated critical patient-care events. A randomized crossover design with matched-pair sampling was used. In a high-fidelity human simulation environment, 4 CRNAs participated in 2 plausible critical anesthesia case scenarios. CRNA performance with and without CADM technology, environmental authenticity, and reliability and validity of data collection tools and simulated case scenarios were evaluated. Time to correct diagnosis and treatment varied by scenario, taking less time with CADM for one but more with CADM for the other, likely due to differences in pace, intensity, and conduct of the 2 scenarios. We believe this study supports further exploration and application of CADM in complex patient scenarios involving anesthesia practitioners. Affirmation of environmental authenticity also validates the high-fidelity human simulation environment as an appropriate setting to conduct research in this area.

摘要

旨在改善医疗系统中患者治疗效果并提高安全性的指令促使了各种辅助医护人员开展各类活动的技术的发展。本研究的目的是探索和评估一种方法,该方法用于检验在模拟的危急患者护理事件中,使用手持设备的计算机辅助决策(CADM)对注册护士麻醉师(CRNA)解决问题的准确性(即正确诊断和治疗)及速度的影响。研究采用了配对抽样的随机交叉设计。在高保真的人体模拟环境中,4名CRNA参与了2个看似合理的危急麻醉病例场景。对使用和不使用CADM技术时CRNA的表现、环境真实性以及数据收集工具和模拟病例场景的可靠性和有效性进行了评估。正确诊断和治疗的时间因场景而异,其中一个场景使用CADM时所需时间较少,而另一个场景使用CADM时所需时间较多,这可能是由于两个场景在节奏、强度和实施方式上存在差异。我们认为本研究支持在涉及麻醉从业人员的复杂患者场景中进一步探索和应用CADM。对环境真实性的确认也验证了高保真人体模拟环境是开展该领域研究的合适环境。

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