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Exploring the Effectiveness of Haptic Alarm Displays for Critical Care Environments

机译:探索针对重症监护环境的触觉报警显示器的有效性

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Noise in critical care units, in particular, from patient monitor alarms, is harmful for clinicians and patients alike. This has motivated research aimed at shifting the delivery of physiological vital sign information and annunciation of alarm events from visual and auditory devices to haptic transducers. We compare performance in perceiving and identifying the specific type and level of a vital sign that has entered a high or low state, i.e., an alarm event, using several designs of a vibrotactile display, against that of the traditional auditory alarm in conjunction with a graphical patient monitor. A distractor activity was used to simulate competing task demands in the clinical environment. Responses were assessed with respect to response time and accuracy. With sufficient anatomical separation of the actuators, certain vibrotactile information rendering strategies demonstrated performance that was not significantly different from that of the baseline condition, both in response time and accuracy. We conclude that vibrotactile delivery of patient vitals can support alarm-state vital sign identification competitive with graphical and auditory alarm display conditions, without significantly impacting performance on a parallel attention-demanding activity. This suggests the possibility of improving high-impact healthcare environments by replacing disturbing auditory alarms with vibrotactile information delivery to clinicians.
机译:特别是患者监测报警的临界监护单元中的噪声对临床医生和患者有害。这具有激励的研究,旨在使从视觉和听觉设备转移到触觉传感器的视觉和听觉装置的警报事件的交付。我们比较在感知和识别使用振动触觉显示器的多种设计的重要符号的特定类型和级别的特定类型和水平,与传统听觉报警结合使用图形患者监测器。在临床环境中使用了令人满意的活动来模拟竞争任务需求。根据响应时间和准确性评估响应。具有足够的致动器的解剖分离,某些振动信息渲染策略在响应时间和准确性方面表现出与基线条件的性能没有显着差异。我们得出结论,患者vibrotActive递送患者vitals可以支持与图形和听觉报警显示条件的报警 - 状态生命符号识别,而不会显着影响平行关注的苛刻活动的性能。这表明通过替换与临床医生的振动触控信息的扰乱听觉警报来改善高影响医疗保健环境。

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