临床气体分析仪的动态响应测量

Kabita Shakya, C. Deegan, F. Hegarty, C. Markham
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引用次数: 1

摘要

二氧化碳记录仪是在麻醉和机械通气期间利用患者呼出的CO/sub - 2/来监测心肺状态的设备。这种波形被称为脑电图。目前,二氧化碳计通常只通过静态校准方法进行校准。没有特定的动态测试方法。由于毛细管图是时变的,因此对这些系统的动态响应进行评估是有明确要求的。本文介绍了一种利用定制的EtCO/sub - 2/模拟器系统来确定二氧化碳计时间和频率响应的技术。本系统由计算机通过C程序控制。一个便携式版本的模拟器系统也已开发使用微处理器。记录仿真系统获得的波形,并利用Matlab对图像进行分析,得到监控器的时间和频率响应。本文详细阐述了该技术的图像分析部分。对几种类型的二氧化碳记录仪系统的测量证明,旧的二氧化碳记录仪通常不能满足制造商所引用的时间和频率响应规范。因此,在日常基础上监测心电图是重要的,也是推荐的。这种时间和频率响应测量的新技术可以作为监控器质量控制方案的一部分;进行调试和日常监控,以及验证新设备的制造商报价规格。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic response measurement of clinical gas analysers
Capnographs are devices that use CO/sub 2/ from a patients' expired breath to monitor the cardiopulmonary status during anaesthesia and mechanical ventilation. The waveforms are called capnograms. Capnographs at present are routinely calibrated via a static calibration method only. There is no specific method of dynamically testing capnographs. Since capnograms are time varying, there is a definite requirement to evaluate the dynamic response of these systems. This paper presents a technique to determine the time and frequency response of capnographs using a custom built EtCO/sub 2/ simulator system. This system is computer controlled via a C program. A portable version of the simulator system has also been developed using a microprocessor. The waveforms obtained using the simulator system are recorded and image analysis is performed using Matlab to obtain the time and frequency responses of the capnographs. This paper explains the image analysis part of the technique in detail. Measurements of several types of capnograph systems proved that older capnographs usually do not satisfy the manufacturer quoted specifications for time and frequency response. Monitoring capnographs on a routine basis is thus important and is recommended. This new technique of time and frequency response measurement can be used as part of a quality control protocol for capnographs; for commissioning and routine monitoring as well as to verify manufacturer quoted specifications in new units.
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