A Simple Bio-Instrumentation Platform for Vital-Sign Estimation Using MagnetoPleythsmography

K. Jishnu, C. Anoop
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Abstract

This paper presents a simple magnetics-based instrumentation system for the estimation of two vital parameters, namely Heart Rate and Respiration Rate. A sensor-head realising the concept of magnetic plethysmography has been designed to acquire the biosignal from the human arm (i.e. radial artery). Further, an efficient electronic system and signal processor stage is designed for accurate estimation of heart rate and breathing rate. The proposed electronics include novel stages, such as (1) an improved instrumentation amplifier (for reducing artefacts and bias effects) and (2) a precision envelope estimator (for respiratory rate estimation). The design methodology of the system has been explained in the paper. Hardware prototypes of the sensor-head using a giant magnetoresistance sensor, as well as the processing electronics, have been built and tested. Studies show that the system can estimate HR with an error of less than 2 beats per minute. The non-contact working of the developed sensor-head is also proved in experimentation. Basic feasibility study on RR estimation has also been carried out. The proposed sensor system can be suitably packaged into compact modules and used in portable health monitors, ambulatory services, etc.
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一个简单的生物仪器平台,用于生命体征估计使用磁波饱和度
本文介绍了一种简单的基于磁的仪器系统,用于估计两个重要参数,即心率和呼吸速率。实现磁体积描记概念的传感头已经被设计用于获取来自人体手臂(即桡动脉)的生物信号。此外,设计了一个有效的电子系统和信号处理器平台,用于准确估计心率和呼吸频率。提出的电子设备包括新的阶段,例如(1)改进的仪表放大器(用于减少伪影和偏置效应)和(2)精确包络估计器(用于呼吸速率估计)。本文阐述了该系统的设计方法。硬件原型的传感器头使用一个巨大的磁电阻传感器,以及处理电子,已经建立和测试。研究表明,该系统估计心率的误差小于每分钟2次。实验证明了所研制的传感头的非接触式工作特性。进行了RR估计的基本可行性研究。所提出的传感器系统可以适当地封装成紧凑的模块,并用于便携式健康监测,门诊服务等。
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