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Multi-parameter vital sign database to assist in alarm optimization for general care units

机译:多参数生命体征数据库可帮助优化一般护理部门的警报

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摘要

Continual vital sign assessment on the general care, medical-surgical floor is expected to provide early indication of patient deterioration and increase the effectiveness of rapid response teams. However, there is concern that continual, multi-parameter vital sign monitoring will produce alarm fatigue. The objective of this study was the development of a methodology to help care teams optimize alarm settings. An on-body wireless monitoring system was used to continually assess heart rate, respiratory rate, SpO(2) and noninvasive blood pressure in the general ward of ten hospitals between April 1, 2014 and January 19, 2015. These data, 94,575 h for 3430 patients are contained in a large database, accessible with cloud computing tools. Simulation scenarios assessed the total alarm rate as a funs/patient/day predicted from the cloud-hosted database was the same as ction of threshold and annunciation delay (s). The total alarm rate of ten alarmthe total alarm rate for a 10 day evaluation (1550 h for 36 patients) in an independent hospital. Plots of vital sign distributions in the cloud-hosted database were similar to other large databases published by different authors. The cloud-hosted database can be used to run simulations for various alarm thresholds and annunciation delays to predict the total alarm burden experienced by nursing staff. This methodology might, in the future, be used to help reduce alarm fatigue without sacrificing the ability to continually monitor all vital signs.
机译:预计对一般护理,外科手术室进行持续的生命体征评估,可以早期发现患者病情恶化,并提高快速反应小组的效率。然而,令人担忧的是,连续的多参数生命体征监测将产生警报疲劳。这项研究的目的是开发一种方法,以帮助护理团队优化警报设置。在2014年4月1日至2015年1月19日之间,使用了一种无线人体监测系统来连续评估10家医院的普通病房的心率,呼吸频率,SpO(2)和无创血压。这些数据为94,575小时,大型数据库中包含3430位患者,可使用云计算工具进行访问。仿真方案评估了总警报率,根据从云托管数据库预测的娱乐/患者/天,与阈值和通知延迟的部分相同。十个警报的总警报率-在独立医院进行10天评估的总警报率(36名患者1550小时)。云托管数据库中的生命体征分布图与不同作者发布的其他大型数据库相似。云托管数据库可用于针对各种警报阈值和通知延迟运行模拟,以预测护理人员经历的总警报负担。将来,可以使用这种方法来帮助减轻警报疲劳,而不会牺牲持续监视所有生命体征的能力。

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