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首页> 外文期刊>Journal of Fiber Science and Technology >Prototyping of Smart Wearable Socks for Periodic Limb Movement Home Monitoring System
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Prototyping of Smart Wearable Socks for Periodic Limb Movement Home Monitoring System

机译:周期性肢体活动家庭监测系统智能可穿戴袜子的原型设计

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The recent development of functional materials, including smart textiles, has enabled the development of wearable biosignal measurement devices that are easy to handle and can be used on a daily basis, even by non-medical users. We focused on sleep disorders as a preliminary application for wearable devices, which are reported to be associated with or exacerbate other diseases, and must therefore be detected early and treated appropriately based on the usual sleep status of the patient. Periodic limb movement disorder (PLMD), which induces nocturnal awakening due to PLM while sleeping, is a sleep disorder that is thought to affect a considerable number of individuals. Since polysomnography (PSG), which needs time consuming hospitalization and forces a financial burden on the patient, is the only practical method for PLMD screening, some PLMD patients are supported to be remain undiagnosed and untreated.In order to resolve this situation, we aim to develop a PLM home monitoring system that consists of fabric adapters and fabric electrodes that can detect PLMs based on surface electromyogram (SEMG) measurement, without disturbing the usual sleep of subject. We developed a prototype SEMG measurement system that combined ready-made stretchy socks and fabric electrodes that can be easily handled by the patients without any medical knowledge. This prototype can prevent measurement faults due to the slippage of measurement electrodes as the measurement electrodes are fixed by the pressure of the fabric adapter. We first evaluated the functional ability in voluntary movements by comparing the SEMG obtained with the prototype to that obtained using conventional electrodes. We then performed SEMG measurement while PLMs and confirmed that the prototype has the potential to discriminate PLMs from voluntary movements. The proposed sockstype SEMG measurement device is expected to be able to precisely quantify PLMs, even when handled by non-medical users in their home.
机译:包括智能纺织品在内的功能材料的最新发展使可穿戴生物信号测量设备得以开发,该设备易于操作,即使非医疗用户也可以每天使用。我们将睡眠障碍作为可穿戴设备的初步应用,据报道可穿戴设备与其他疾病相关或加重了疾病,因此必须尽早发现并根据患者的正常睡眠状况进行适当治疗。周期性肢体运动障碍(PLMD)是由于睡眠中PLM引起的夜间觉醒,是一种睡眠障碍,被认为会影响很多人。由于多导睡眠图(PSG)是费时的住院治疗,并给患者带来经济负担,是唯一可行的PLMD筛查方法,因此支持对一些PLMD患者进行诊断和治疗,以解决这种情况,我们的目标是开发一个由织物适配器和织物电极组成的PLM家庭监控系统,该系统可以基于表面肌电图(SEMG)测量来检测PLM,而不会干扰受试者的正常睡眠。我们开发了一个原型SEMG测量系统,该系统将现成的弹力袜子和织物电极相结合,患者无需任何医学知识即可轻松操作。该原型可以防止由于测量电极的滑动而导致的测量故障,因为测量电极是通过织物适配器的压力固定的。我们首先通过比较使用原型获得的SEMG与使用常规电极获得的SEMG,评估了自主运动中的功能能力。然后,我们在PLM时进行了SEMG测量,并确认原型具有将PLM与自愿运动区分开的潜力。预期所提议的袜子型SEMG测量设备即使在非医疗用户在家中操作时,也能够精确地量化PLM。

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