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首页> 外文期刊>生体医工学 >歩行中の光電脈波計に関する計測部位と計測光の比較
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歩行中の光電脈波計に関する計測部位と計測光の比較

机译:步行过程中与光电脉搏计有关的测量部位和测量光的比较

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摘要

Pulse rates obtained from photoplethysmography (PPG) sensors are important for monitoring cardiovascular condition, especially during exercise, because it is a simple, low-cost, and easy to use. However, it is difficult to precisely count pulse rates during exercise because PPG is sensitive to body movement. When a motion artifact occurs, changes in vascular volume cause noise. Differences in cutaneous blood supply to different anatomic regions are apparent from the literature. Here, we consider motion artifacts as related to anatomical measurement sites and light sources. In order to eliminate the motion artifacts, we compared the signal obtained from green PPG to that from infrared PPG with related to different anatomical sites during body movement. PPG were collected simultaneously from three anatomical sites: upper arm, wrist and finger. Eleven young healthy subjects without any indication of peripheral arterial disease were recruited to participate in the experiment. To produce artifacts, the subjects were asked to walk at a pace of 4 km/hr on the treadmill. PPG magnitude and intervals were calculated by peak detection using predetermined thresholds, and the error rate between the PPG pulse rate and the heart rate was then compared. As the results, the magnitude and variability of the green PPG have different nature to those of the infrared PPG. In a resting state, the maximum magnitude of green PPG was located at upper arm, but that of infrared was located at wrist. During walking, all site of infrared PPG were more sensitive to motion artifact than those of green PPG. These results suggested that green PPG reflected different vascular distribution to infrared PPG. Additionally, the green PPG from the upper arm showed less error rate than did the peripheral one. Therefore, the green PPG located at the upper arm may be a suitable for pulse rate monitoring during walking.
机译:从光体积描记器(PPG)传感器获得的脉搏率对于监视心血管状况(尤其是在运动过程中)非常重要,因为它简单,低成本且易于使用。但是,由于PPG对身体运动敏感,因此很难精确地计算运动过程中的脉搏率。当运动伪影发生时,血管体积的变化会引起噪音。从文献中可以明显看出,不同解剖区域的皮肤血液供应存在差异。在这里,我们认为运动伪影与解剖测量部位和光源有关。为了消除运动伪影,我们比较了绿色PPG与红外PPG所获得的信号以及与人体运动过程中不同解剖部位有关的信号。 PPG同时从三个解剖部位采集:上臂,腕部和手指。招募了11名没有任何外周动脉疾病迹象的年轻健康受试者参加该实验。为了产生伪像,要求受试者在跑步机上以4 km / hr的速度行走。通过使用预定阈值进行峰值检测来计算PPG的幅度和间隔,然后比较PPG脉搏率和心率之间的错误率。结果,绿色PPG的幅度和可变性与红外PPG具有不同的性质。在静止状态下,绿色PPG的最大强度位于上臂,而红外的最大强度位于手腕。在行走过程中,红外PPG的所有部位都比绿色PPG的部位对运动伪影更敏感。这些结果表明绿色PPG反映了不同的血管分布到红外PPG。此外,上臂的绿色PPG的错误率比外围的错误率低。因此,位于上臂的绿色PPG可能适合步行过程中的脉搏率监测。

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