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Measuring heart rate, breathing rate and skin conductance during exercise

机译:运动时测量心率,呼吸频率和皮肤电导

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Sensor miniaturization and advances in low power communication protocols have helped enable continuous monitoring of physiological signals. Commercial products exist today which are wearable, in a form of a chest belt or a wrist strap, and can continuously stream or log bio-signals such as heart rate, as well as motion signals. Such devices could be of importance not only to a health-conscious consumer, but also in the healthcare system, for monitoring of patients whose prescribed treatment includes some form of physical activity. This paper proposes a new framework for monitoring compliance and impact of an exercise regimen. While previous related work typically uses an accelerometer based approach, our method gives a more complete picture of impact of exercise on the subject by adding bio-signals such as heart rate, breathing rate and skin conductivity and correlating them with motion signals. Such framework can be used to assess progress over time for different types of exercise regimens.
机译:传感器的小型化和低功耗通信协议的发展有助于实现对生理信号的连续监控。如今,存在以胸带或腕带形式可穿戴的商业产品,它们可以连续地传输或记录生物信号(例如心率和运动信号)。这样的设备不仅对于具有健康意识的消费者很重要,而且在医疗保健系统中对于监视其处方治疗包括某种形式的身体活动的患者也很重要。本文提出了一个监测运动方案依从性和影响的新框架。尽管以前的相关工作通常使用基于加速度计的方法,但我们的方法通过添加生物信号(例如心率,呼吸频率和皮肤电导率)并将它们与运动信号相关联,从而提供了运动对受试者影响的更完整的图像。此类框架可用于评估不同类型锻炼方案随时间的进展。

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