Kulkarni V, Cyna A, Hutchison J M, Tunstall M E, Mallard J R
Department of Biomedical Physics and BioEngineering, University of Aberdeen, Scotland.
Biomed Sci Instrum. 1990;26:111-20.
The Aberdeen University Respiratory Alarm (AURA) is designed to monitor the respiratory rate and the inter- expiratory period (respiratory gap) in the spontaneously breathing patient using polarised polyvinylidene fluoride sensors incorporated in the Oxygen delivery mask. The monitor is composed of three modules--the sensor module includes a pair of polyvinylidene film strips mounted on the inner surface of the Oxygen mask. The difference in temperature between the ambient Oxygen enriched air and the warmer expired air allows the pyroelectric property of the sensors to be harnessed. The sensor arrangement allows a differential signal to develop between them which is amplified, filtered and rectified prior to triggering a counter. The timing module is based on a 32,768 Hz crystal oscillator that generates pulses allowing the period between expirations to be measured and compared to the maximum allowable period set by the user. The respiratory rate is also measured and compared to the minimum set by the user using EPROMS and comparators. The display module consists of a bar-graph display of the level of the sensed signal with each breath with a soft audible click. Eight segment LEDs are used to provide a digital display of the respiratory rate and the respiratory gap. Audiovisual alarms are triggered when the rate falls short of the set rate and/or when the gap exceeds the set gap. The need for continuous respiratory monitoring of the spontaneously breathing adult in hospital practice led us to develop this prototype with sensors whose design and configuration can be considerably improved.
阿伯丁大学呼吸警报器(AURA)旨在使用集成在输氧面罩中的极化聚偏二氟乙烯传感器,监测自主呼吸患者的呼吸频率和呼气间期(呼吸间隙)。该监测器由三个模块组成——传感器模块包括一对安装在氧气面罩内表面的聚偏二氟乙烯薄膜条。环境富氧空气与较温暖的呼出空气之间的温度差异使得传感器的热电特性得以利用。传感器的布置使它们之间产生一个差分信号,该信号在触发计数器之前会被放大、滤波和整流。定时模块基于一个32768赫兹的晶体振荡器,该振荡器产生脉冲,用于测量呼气之间的时间间隔,并与用户设定的最大允许时间间隔进行比较。呼吸频率也会被测量,并使用可编程只读存储器(EPROM)和比较器与用户设定的最小值进行比较。显示模块由一个条形图组成,显示每次呼吸时传感信号的水平,并伴有轻柔的可听见的咔嗒声。八个分段发光二极管用于提供呼吸频率和呼吸间隙的数字显示。当呼吸频率低于设定值和/或间隙超过设定值时,会触发视听警报。在医院实践中,对自主呼吸的成年人进行持续呼吸监测的需求促使我们开发了这个原型,其传感器的设计和配置还有很大的改进空间。