CP-Stethoscope: Phantom model experiments

L. Tamaye, R. Perron, D. Bibb, Jason Tanabe, Fernan Suela, G. Huang, M. Iskander
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引用次数: 2

Abstract

A phantom cross section of a human thorax was developed to evaluate the sensitivity of the Cardiopulmonary Stethoscope (CP-Stethoscope) system to detect changes in lung water content. Phantom heart and muscle tissues were also developed with dielectric properties similar to human tissue and sponges were used to model lung tissues. A structure was also built to evenly distribute water over the sponges. A 2port to 8port RF switch was developed to switch the sensors between transmitter and receiver configurations and examine sensitivity of measurement to sensors locations. Changes in the phase of the transmitted signal were correlated to the variation in the amount of the water inserted into the sponges. This experiment was used to examine the sensitivity of the CP-Stethoscope system and ability to detect water gradient in the lung. Results show that significant changes in the phase of the transmission coefficient are detectable as water migrates from the top surface to the bottom of the phantom model.
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cp -听诊器:幻影模型实验
开发了人体胸腔的幻影横切面,以评估心肺听诊器(CP-Stethoscope)系统检测肺含水量变化的敏感性。模拟心脏和肌肉组织也被开发出具有类似人体组织的介电特性,海绵被用来模拟肺组织。还建造了一个结构来均匀地将水分布在海绵上。开发了一个2端口到8端口的射频开关,用于在发送器和接收器配置之间切换传感器,并检查测量对传感器位置的灵敏度。传输信号相位的变化与插入海绵的水量的变化有关。本实验旨在检测cp -听诊器系统的灵敏度和检测肺水梯度的能力。结果表明,当水从幻影模型的上表面迁移到底部时,透射系数的相位发生了显著变化。
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