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基于脉搏触诊的心率测量的低功耗传感方法。

A Power-Efficient Sensing Approach for Pulse Wave Palpation-Based Heart Rate Measurement.

机构信息

Institute of Engineering and Technology, Universidad Autónoma de Ciudad Juárez (UACJ), Ciudad Juárez 32310, Mexico.

出版信息

Sensors (Basel). 2021 Nov 13;21(22):7549. doi: 10.3390/s21227549.

Abstract

Heart rate (HR) is an essential indicator of health in the human body. It measures the number of times per minute that the heart contracts or beats. An irregular heartbeat can signify a severe health condition, so monitoring heart rate periodically can help prevent heart complications. This paper presents a novel wearable sensing approach for remote HR measurement by a compact resistance-to-microcontroller interface circuit. A heartbeat's signal can be detected by a Force Sensing Resistor (FSR) attached to the body near large arteries (such as the carotid or radial), which expand their area each time the heart expels blood to the body. Depending on how the sensor interfaces with the subject, the FSR changes its electrical resistance every time a pulse is detected. By placing the FSR in a direct interface circuit, those resistance variations can be measured directly by a microcontroller without using either analog processing stages or an analog-to-digital converter. In this kind of interface, the self-heating of the sensor is avoided, since the FSR does not require any voltage or bias current. The proposed system has a sampling rate of 50 Sa/s, and an effective resolution of 10 bits (200 mΩ), enough for obtaining well-shaped cardiac signals and heart rate estimations in real time by the microcontroller. With this approach, the implementation of wearable systems in health monitoring applications is more feasible.

摘要

心率(HR)是人体健康的一个重要指标。它表示心脏每分钟收缩或跳动的次数。心跳不规律可能表示严重的健康状况,因此定期监测心率有助于预防心脏并发症。本文提出了一种新颖的可穿戴传感方法,通过紧凑的电阻-微控制器接口电路实现远程心率测量。可以通过附着在靠近大动脉(如颈动脉或桡动脉)的身体上的力感电阻器(FSR)来检测心跳信号,每当心脏向身体排出血液时,大动脉就会扩大其面积。根据传感器与主体的接口方式,每次检测到脉搏时,FSR 的电阻都会发生变化。通过将 FSR 置于直接接口电路中,微控制器可以直接测量这些电阻变化,而无需使用模拟处理阶段或模数转换器。在这种接口中,避免了传感器的自热,因为 FSR 不需要任何电压或偏置电流。所提出的系统具有 50 Sa/s 的采样率和 10 位(200 mΩ)的有效分辨率,足以通过微控制器实时获得形状良好的心脏信号和心率估计值。通过这种方法,在健康监测应用中实现可穿戴系统更加可行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2af/8623446/96328f91e30f/sensors-21-07549-g001.jpg

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