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The effect of textile-based inductive coil sensor positions for heart rate monitoring.

机译:基于纺织品的感应线圈传感器位置对心率监测的影响。

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In the research related to heart rate measurement, few studies have been done using magnetic-induced conductivity sensing methods to measure the heart rate. The aim of this study was to analyze the effect of the position of a textile-based inductive coil sensor on the measurement of the heart rate. In order to assess the capability of the textile-based inductive coil sensor and the repeatability of measured cardiac muscle contractions, we proposed a new quality index based on the morphology of measured signals using a textile-based inductive coil sensor. We initially explored eight potential positions of the inductive sensor in a pilot experiment, followed by three sensor positions in the main experiment. A simultaneously measured electrocardiography (ECG) signal (Lead II) which was used as a reference signal for a comparison of the R-peak location with signals obtained from selected positions of the textile-based inductive coil sensor. The result of the main experiment indicated that the total quality index obtained from the sensor position 'P3', which was located 3?cm away from the left side from the center front line on the chest circumference line, was the highest (QI value = 1.30) among the three positions across all the subjects. This finding led us to conclude that (1) the position of the textile-based inductive coil sensor significantly affected the quality of the measurement results, and that (2) P3 would be the most appropriate position for the textile-based inductive coil sensor for heart rate measurements based on the magnetic-induced conductivity sensing principle.
机译:在与心率测量有关的研究中,很少使用磁感应电导率传感方法来测量心率的研究。这项研究的目的是分析基于纺织品的感应线圈传感器的位置对心率测量的影响。为了评估基于纺织品的感应线圈传感器的功能和所测量的心肌收缩的可重复性,我们基于基于纺织品的感应线圈传感器的测量信号的形态,提出了一种新的质量指标。我们最初在先导实验中探索了感应式传感器的八个潜在位置,然后在主要实验中探索了三个传感器位置。同时测量的心电图(ECG)信号(方法II)用作参考信号,用于将R峰位置与从基于纺织品的感应线圈传感器的选定位置获得的信号进行比较。主要实验结果表明,从传感器位置“ P3”获得的总质量指数最高(QI值=距胸围线中心前线左侧3厘米)。 1.30)在所有主题的三个位置之间。这一发现使我们得出以下结论:(1)纺织品基电感线圈传感器的位置会显着影响测量结果的质量,并且(2)P3将是纺织品基电感线圈传感器最适合的位置。基于磁感应电导率传感原理的心率测量。

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