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增加传感器通道:解决导致桡动脉脉搏信号采集中生理参数不准确的紧迫偏移问题的一种方法。

Increasing the sensor channels: a solution for the pressing offsets that cause the physiological parameter inaccuracy in radial artery pulse signal acquisition.

作者信息

Chen Chao, Chen Zhendong, Luo Hongmiin, Peng Bo, Hao Yinan, Xie Xiaohua, Xie Haiqing, Li Xinxin

机构信息

School of Computer Science and Engineering, Sun Yat-Sen University, Guangzhou, China.

Science and Technology Innovation Center, Guangzhou University of Chinese Medicine, Guangzhou, China.

出版信息

Front Bioeng Biotechnol. 2024 Feb 15;12:1359297. doi: 10.3389/fbioe.2024.1359297. eCollection 2024.

Abstract

In studies of pulse wave analysis, single-channel sensors only adopt single temporal pulse signals without spatial information to show pulse-feeling patterns. Multi-channel arterial pulse signals, also named as three-dimensional pulse images (3DPIs), provide the spatial and temporal characteristics of radial pulse signals. When involving single or few-channel sensors, pressing offsets have substantial impacts on obtaining inaccurate physiological parameters like tidal peak (P). This study discovers the pressing offsets in multi-channel pulse signals and analyzes the relationship between the pressing offsets and time of P2 (T) by qualifying the pressing offsets. First, we employ a data acquisition system to capture 3DPIs. Subsequently, the errorT is developed to qualify the pressing offsets. The outcomes display a central low and peripheral high pattern. Additionally, the errorT increase as the distances from the artery increase, particularly at the radial ends of the blood flow direction. For every 1 mm increase in distances between sensing elements and center sensing elements, the errorT in the radial direction escalates by 4.87%. When the distance is greater than 3.42 mm, the errorT experiences a sudden increase. The results show that increasing the sensor channels can overcome the pressing offsets in radial pulse signal acquisition.

摘要

在脉搏波分析研究中,单通道传感器仅采用单一的时域脉搏信号,而不包含空间信息来显示脉象模式。多通道动脉脉搏信号,也称为三维脉搏图像(3DPIs),提供了桡动脉脉搏信号的时空特征。当使用单通道或少数通道传感器时,按压偏移对获取诸如潮峰(P)等不准确的生理参数有重大影响。本研究发现了多通道脉搏信号中的按压偏移,并通过对按压偏移进行量化来分析按压偏移与P2时间(T)之间的关系。首先,我们使用数据采集系统来获取3DPIs。随后,开发了误差T来量化按压偏移。结果显示出中心低周边高的模式。此外,误差T随着与动脉距离的增加而增大,特别是在血流方向的桡侧末端。传感元件与中心传感元件之间的距离每增加1毫米,径向方向上的误差T就会增加4.87%。当距离大于3.42毫米时,误差T会突然增大。结果表明,增加传感器通道可以克服桡动脉脉搏信号采集中的按压偏移。

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