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The Precise Mechanisms of a High-Speed Ultrasound Gas Sensor and Detecting Human-Specific Lung Gas Exchange

机译:高速超声波气体传感器的精确机制和检测人专用肺气体交换的机制

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In this paper, we propose and develop a new real-time human respiration process analysis method using a high-time-sampling gas concentration sensor based on ultrasound. A unique point about our proposed gas concentration sensor is its 1 kHz gas concentration sampling speed. This figure could not have been attained by previously proposed gas concentration measurement methods such as InfraRed, semiconductor gas sensors, or GC-MS, because the gas analysis speeds were a maximum of a few hundred milliseconds. First, we describe the proposed new ultrasound sound speed measurement method and the signal processing, and present the measurement circuit diagram. Next, we analyse the human respiration gas variation patterns of five healthy subjects using a newly developed gas-mask-type respiration sensor. This reveals that the rapid gas exchange from H2O to CO2 contains air specific to the human being. In addition, we also measured medical symptoms in subjects suffering from asthma, hyperventilation and bronchial ast...
机译:在本文中,我们提出并开发了一种新的实时人体呼吸过程分析方法,该方法使用了基于超声的高采样气体浓度传感器。关于我们提出的气体浓度传感器的独特之处在于其1 kHz的气体浓度采样速度。以前提出的气体浓度测量方法(例如InfraRed,半导体气体传感器或GC-MS)无法获得该数字,因为气体分析速度最大为几百毫秒。首先,我们描述了提出的新的超声波声速测量方法和信号处理,并给出了测量电路图。接下来,我们使用新开发的防毒面具型呼吸传感器分析五名健康受试者的人体呼吸气体变化模式。这表明从H2O到CO2的快速气体交换包含了人类特有的空气。此外,我们还测量了患有哮喘,过度换气和支气管哮喘的受试者的医学症状。

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