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首页> 外文期刊>Journal of healthcare engineering. >A New Blood Pulsation Simulator Platform Incorporating Cardiovascular Physiology for Evaluating Radial Pulse Waveform
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A New Blood Pulsation Simulator Platform Incorporating Cardiovascular Physiology for Evaluating Radial Pulse Waveform

机译:一种新的血浆模拟器平台,包括用于评估径向脉冲波形的心血管生理学

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摘要

To meet the need for "standard" testing system for wearable blood pressure sensors, this study intends to develop a new radial pulsation simulator that can generate age-dependent reference radial artery pressure waveforms reflecting the physiological characteristics of human cardiovascular system. To closely duplicate a human cardiovascular system, the proposed simulator consists of a left ventricle simulation module, an aorta simulation module, a peripheral resistance simulation module, and a positive/negative pressure control reservoir module. Simulating physiologies of blood pressure, the compliance chamber in the simulator can control arterial stiffness to produce age-dependent pressure waveforms. The augmentation index was used to assess the pressure waveforms generated by the simulator. The test results show that the simulator can generate and control radial pressure waveforms similar to human pulse signals consisting of early systolic pressure, late systolic pressure, and dicrotic notch. Furthermore, the simulator's left ventricular pressure-volume loop results demonstrate that the simulator exhibits mechanical characteristics of the human cardiovascular system. The proposed device can be effectively used as a "standard" radial artery pressure simulator to calibrate the wearable sensor's measurement characteristics and to develop more advanced sensors. The simulator is intended to serve as a platform for the development, performance verification, and calibration of wearable blood pressure sensors. It will contribute to the advancement of the wearable blood pressure sensor technology, which enables real-time monitoring of users' radial artery pressure waveforms and eventually predicting cardiovascular diseases.
机译:为了满足可穿戴血压传感器的“标准”检测系统的需求,本研究打算开发一种新的径向脉动模拟器,可以产生反映人心血管系统的生理特性的年龄依赖性参考径向动脉压力波形。为了密切复制人体心血管系统,所提出的模拟器由左心室仿真模块,主动脉仿真模块,外围电阻仿真模块和正/负压控制储存模块组成。模拟血压的生理学,模拟器中的顺应室可以控制动脉刚度以产生年龄依赖性的压力波形。增强索引用于评估模拟器产生的压力波形。测试结果表明,模拟器可以产生和控制类似于由早期收缩压,晚期收缩压和二氯化物凹口组成的人脉冲信号的径向压力波形。此外,模拟器的左心室压力量环结果表明,模拟器表现出人体心血管系统的机械特性。该提出的装置可以有效地用作“标准”径向动脉压力模拟器,以校准可穿戴传感器的测量特性并开发更先进的传感器。模拟器旨在作为可穿戴血压传感器的开发,性能验证和校准的平台。它将有助于推进可穿戴血压传感器技术,这使得能够实时监测用户的桡动脉压力波形,最终预测心血管疾病。

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