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加速度和机电膜传感器的心力描记图研究。

Ballistocardiogaphic studies with acceleration and electromechanical film sensors.

机构信息

Tampere University of Technology, Department of Biomedical Engineering, Tampere, Finland.

出版信息

Med Eng Phys. 2009 Nov;31(9):1154-65. doi: 10.1016/j.medengphy.2009.07.020. Epub 2009 Aug 26.

Abstract

The purpose of this research is to demonstrate and compare the utilization of electromechanical film (EMFi) and two acceleration sensors, ADXL202 and MXA2500U, for ballistocardiographic (BCG) and pulse transit time (PTT) studies. We have constructed a mobile physiological measurement station including amplifiers and a data collection system to record the previously mentioned signals and an electrocardiogram signal. Various versions of the measuring systems used in BCG studies in the past are also presented and evaluated. We have showed the ability of the EMFi sensor to define the elastic properties of the cardiovascular system and to ensure the functionality of the proposed instrumentation in different physiological loading conditions, before and after exercise and sauna bath. The EMFi sensor provided a BCG signal of good quality in the study of the human heart and function of the cardiovascular system with different measurement configurations. EMFi BCG measurements provided accurate and repeatable results for the different components of the heart cycle. In multiple-channel EMFi measurements, the carotid and limb pulse signals acquired were detailed and distinctive, allowing accurate PTT measurements. Changes in blood pressure were clearly observed and easily determined with EMFi sensor strips in pulse wave velocity (PWV) measurements. In conclusion, the configuration of the constructed device provided reliable measurements of the electrocardiogram, BCG, heart sound, and carotid and ankle pulse wave signals. Attached EMFi sensor strips on the neck and limbs yield completely new applications of the EMFi sensors aside from the conventional seat and supine recordings. Higher sensitivity, ease of utilization, and minimum discomfort of the EMFi sensor compared with acceleration sensors strengthen the status of the EMFi sensor for accurate and reliable BCG and PWV measurements, providing novel evaluation of the elastic properties of the cardiovascular system.

摘要

本研究旨在展示和比较机电薄膜(EMFi)和两个加速度传感器(ADXL202 和 MXA2500U)在心动描记(BCG)和脉搏传输时间(PTT)研究中的应用。我们构建了一个移动生理测量站,包括放大器和数据采集系统,用于记录上述信号和心电图信号。还介绍和评估了过去用于 BCG 研究的各种版本的测量系统。我们展示了 EMFi 传感器定义心血管系统弹性特性的能力,并在运动前和运动后、桑拿浴前后不同生理负荷条件下证明了所提出仪器的功能。在人体心脏和心血管系统功能的研究中,EMFi 传感器提供了高质量的 BCG 信号,具有不同的测量配置。EMFi BCG 测量为心脏周期的不同组成部分提供了准确和可重复的结果。在多通道 EMFi 测量中,获得的颈动脉和肢体脉搏信号详细而独特,允许进行准确的 PTT 测量。在脉搏波速度(PWV)测量中,明显观察到并容易确定 EMFi 传感器条带的血压变化。总之,所构建设备的配置提供了可靠的心电图、BCG、心音以及颈动脉和踝部脉搏波信号的测量。在颈部和四肢上附加 EMFi 传感器条带除了传统的坐姿和仰卧位记录外,还为 EMFi 传感器提供了全新的应用。与加速度传感器相比,EMFi 传感器具有更高的灵敏度、更易用性和最小的不适感,这增强了 EMFi 传感器进行准确可靠的 BCG 和 PWV 测量的地位,为心血管系统弹性特性的评估提供了新的方法。

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