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Effectiveness of a Batteryless and Wireless Wearable Sensor System for Identifying Bed and Chair Exits in Healthy Older People

机译:无电池和无线可穿戴传感器系统在健康老年人中识别床和椅子出口的有效性

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摘要

Aging populations are increasing worldwide and strategies to minimize the impact of falls on older people need to be examined. Falls in hospitals are common and current hospital technological implementations use localized sensors on beds and chairs to alert caregivers of unsupervised patient ambulations; however, such systems have high false alarm rates. We investigate the recognition of bed and chair exits in real-time using a wireless wearable sensor worn by healthy older volunteers. Fourteen healthy older participants joined in supervised trials. They wore a batteryless, lightweight and wireless sensor over their attire and performed a set of broadly scripted activities. We developed a movement monitoring approach for the recognition of bed and chair exits based on a machine learning activity predictor. We investigated the effectiveness of our approach in generating bed and chair exit alerts in two possible clinical deployments (Room 1 and Room 2). The system obtained recall results above 93% (Room 2) and 94% (Room 1) for bed and chair exits, respectively. Precision was >78% and 67%, respectively, while F-score was >84% and 77% for bed and chair exits, respectively. This system has potential for real-time monitoring but further research in the final target population of older people is necessary.
机译:在世界范围内,老龄化人口在增加,需要研究减少跌倒对老年人影响的策略。医院跌倒是很普遍的,当前医院的技术实施是在床和椅子上使用本地化的传感器,以警告护理人员未经监督的患者下肢活动。但是,这种系统的误报率很高。我们使用健康的老年志愿者佩戴的无线可穿戴传感器,实时调查床和椅子出口的识别情况。 14名健康的老年参与者参加了监督试验。他们在服装上佩戴了无电池,轻便和无线传感器,并进行了一系列脚本编写的活动。我们开发了一种基于机器学习活动预测器的运动监控方法,用于识别床和椅子出口。我们调查了我们的方法在两种可能的临床部署中(房间1和房间2)生成床和椅子离开警报的有效性。该系统分别获得93%(房间2)和94%(房间1)的床和椅子出口召回结果。床和椅子出口的精度分别为> 78%和67%,而F得分分别为> 84%和77%。该系统具有实时监控的潜力,但有必要对最终的最终目标人群进行进一步研究。

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