无创血压(NIBP)测量振荡原理

R. Jaafar, H. M. Desa, Z. Mahmoodin, M. Abdullah, Z. Zaharudin
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引用次数: 14

摘要

本文介绍了一种基于示波原理的无创血压测量装置的研制。该装置由臂袖、抽气电机、电磁阀、压力传感器、2×16字符LCD显示模块和单片机组成,单片机作为硬件的中央控制器和处理器。在开发阶段,采用LabVIEW进行信号采集和数字信号处理的辅助仪器,也称为虚拟仪器(VI),用于学习和实验。由于振荡NIBP系统的计量学评估中最有问题的部分是确定收缩压(SBP)和舒张压(DBP)的专有算法,因此使用幅度算法。VI是研究数据采集和信号处理的有用工具,可以从振荡包络线的最大值确定收缩压和舒张压。从VI程序的知识,然后被采用到一个独立的NIBP设备。利用为NIBP装置开发的电路,成功地获得了收缩压和舒张压。所做的工作证明了需要进一步改进的设计概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Noninvasive blood pressure (NIBP) measurement by oscillometric principle
This paper describes the development of a noninvasive blood pressure measurement (NIBP) device based on the oscillometric principle. The device is composed of an arm cuff, an air-pumping motor, a solenoid valve, a pressure transducer, and a 2×16 characters LCD display module and a microcontroller which acts as the central controller and processor for the hardware. In the development stage, an auxiliary instrumentation for signal acquisition and digital signal processing using LabVIEW, which is also known as virtual instrument (VI), is incorporated for learning and experimentation purpose. Since the most problematic part of metrological evaluation of an oscillometric NIBP system is in the proprietary algorithms of determining systolic blood pressure (SBP) and diastolic blood pressure (DBP), the amplitude algorithm is used. The VI is a useful tool for studying data acquisition and signal processing to determine SBP and DBP from the maximum of the oscillations envelope. The knowledge from VI procedures is then adopted into a stand alone NIBP device. SBP and DBP are successfully obtained using the circuit developed for the NIBP device. The work done is a proof of design concept that requires further refinement.
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