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基于微处理器的血压计设计。

Design of a microprocessor-based sphygmomanometer.

作者信息

Kalaitzakis K C, Papamarkos N E, Vachtsevanos G J

机构信息

Electronic Engineering Department, Technical University of Crete, Chania, Greece.

出版信息

Biomed Instrum Technol. 1990 Jan-Feb;24(1):31-6.

PMID:2306563
Abstract

This paper describes the implementation on a microprocessor of a new method for the indirect measurement and recording of the systolic and diastolic blood pressure in humans. The technique is based on a statistical analysis of the cardiac pulse pressure signal. Polynomial relations are derived between the amplitude of the pulsatile pressure waveforms at the systolic and diastolic points and the amplitude of pulse signals detected when the artery is fully occluded. With the dual objective of automating the measurement procedure and minimizing errors, an electronic analog-digital sphygmomanometer that contains suitable electronic instrumentation was developed. The functions of processing the pressure signal, automating the measurement, and recording the results are performed and controlled by a microprocessor. A laboratory prototype embodying this approach was constructed and its performance and reliability were verified using a series of clinical tests. The test results indicate that the device is accurate within acceptable bounds for automated blood pressure instruments.

摘要

本文描述了一种在微处理器上实现的用于间接测量和记录人体收缩压和舒张压的新方法。该技术基于对心脏脉压信号的统计分析。推导了收缩压和舒张压点处脉动压力波形的幅度与动脉完全闭塞时检测到的脉搏信号幅度之间的多项式关系。为了实现测量过程自动化和误差最小化这两个目标,开发了一种包含合适电子仪器的电子模拟 - 数字血压计。压力信号处理、测量自动化以及结果记录等功能由微处理器执行和控制。构建了一个体现这种方法的实验室原型,并通过一系列临床试验验证了其性能和可靠性。测试结果表明,该设备在自动血压仪器可接受的范围内是准确的。

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