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Where Can Exercisers Sense Heart Rates Accurately and Comfortably on Their Bodies?

机译:在他们的身体上准确且舒适地感受到心脏速度的地方?

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These days, because of its simplicity, non-invasiveness and unobtrusiveness, photoplethysmography (PPG) has been commonly used for heart rate (HR) sensors. Just placing a light emitting diode (LED) and a photo detector (PD) on the skin surface, PPG can measure HR as the change of light intensity in the PD output, so PPG-based HR sensor can be applied for almost any part of human body under which there is a blood vessel. On the other hand, when applying a PPG-based HR sensor in exercise, human body motion introduces motion artifact (MA) in the PD output, which results in erroneous HR. The degree of motion during exercise depends on the part of human body, so attainable HR and tolerance against MA must depend on the part of human body where HR is sensed. In this paper, we investigate the part of our bodies where we can accurately and comfortably sense our HRs during exercise. We conduct experiments involving ten human subjects, and we evaluate the performance of a PPG-based HR sensor. In the experiments, we select four human body parts such as forearm, wrist, waist and calf, and evaluate the HR at different fastening belt pressures and different exercise intensities. Our results show that the forearm is the best where the HR error can be the lowest with a tight belt pressure.
机译:如今,由于其简单性,非侵袭性和不引人注目的性,光学仪描射(PPG)通常用于心率(HR)传感器。只需将发光二极管(LED)和皮肤检测器(PD)放置在皮肤表面上,PPG可以测量HR作为PD输出中的光强度的变化,因此基于PPG的HR传感器可以应用于几乎任何部分人体有血管。另一方面,当在运动中应用基于PPG的HR传感器时,人体运动在PD输出中引入运动伪影(MA),这导致错误的HR。运动期间的运动程度取决于人体的一部分,因此可达到的人力资源和对MA的耐受性必须依赖于感测小时人体的一部分。在本文中,我们调查了我们的身体的一部分,我们可以在运动期间准确且舒适地感知我们的人力资源。我们进行涉及十个人类受试者的实验,我们评估了基于PPG的HR传感器的性能。在实验中,我们选择四个人体部位,例如前臂,手腕,腰部和小腿,并评估不同紧固带压力的HR和不同的运动强度。我们的结果表明,前臂是HR误差可能是最低的带压力的最佳状态。

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