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Deconstructing Commercial Wearable Technology: Contributions toward Accurate and Free-Living Monitoring of Sleep

机译:解构商业可穿戴技术:对准确和自由生活监测的贡献

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摘要

Despite prolific demands and sales, commercial sleep assessment is primarily limited by the inability to “measure” sleep itself; rather, secondary physiological signals are captured, combined, and subsequently classified as sleep or a specific sleep state. Using markedly different approaches compared with gold-standard polysomnography, wearable companies purporting to measure sleep have rapidly developed during recent decades. These devices are advertised to monitor sleep via sensors such as accelerometers, electrocardiography, photoplethysmography, and temperature, alone or in combination, to estimate sleep stage based upon physiological patterns. However, without regulatory oversight, this market has historically manufactured products of poor accuracy, and rarely with third-party validation. Specifically, these devices vary in their capacities to capture a signal of interest, process the signal, perform physiological calculations, and ultimately classify a state (sleep vs. wake) or sleep stage during a given time domain. Device performance depends largely on success in all the aforementioned requirements. Thus, this review provides context surrounding the complex hardware and software developed by wearable device companies in their attempts to estimate sleep-related phenomena, and outlines considerations and contributing factors for overall device success.
机译:尽管需求和销售量,商业睡眠评估主要受到无法“措施”睡眠的限制;相反,捕获次级生理信号,组合,随后被归类为睡眠或特定的睡眠状态。与黄金标准多面体摄影相比,使用明显不同的方法,近几十年来,往往迅速发展的可穿戴公司。宣传这些设备以通过传感器监测睡眠,例如加速度计,心电图,光增性血清拍摄和温度,单独或组合,以基于生理模式来估计睡眠阶段。但是,如果没有监管监督,这个市场历史上制造了差的准确性产品,并且很少与第三方验证很少。具体地,这些装置在其容量中变化以捕获感兴趣的信号,处理信号,执行生理计算,并最终在给定时域期间对状态(睡眠与唤醒)或睡眠阶段进行分类。设备性能在很大程度上取决于所有上述要求的成功。因此,本综述提供了围绕可穿戴设备公司开发的复杂硬件和软件的上下文,他们试图估计与睡眠相关的现象,并概述了整体设备成功的考虑因素和贡献因素。

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