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Evaluation of the use of frequency response in the diagnosis of pleural effusion on a phantom model of the human lungs

机译:评价频率响应在人肺幻影模型对胸腔积液诊断中的使用

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Pleural effusion is one of the most widespread respiratory diseases in the world. Current diagnostic techniques include a combination of medical history and x-ray or CT scan imaging of the chest. However, these techniques are expensive and impractical in resource limited settings. We propose a new method based on sound transmission into the respiratory system through the chest wall. To evaluate this technique, a sine sweep signal with a frequency range between 100 Hz and 1000 Hz was transmitted into a phantom model of the human lungs capable of simulating healthy and effused conditions. The frequency response of the model under both conditions was computed and compared to evaluate the diagnostic performance of the new method. The results indicate that there is a significant difference between the frequency response of healthy and effused lungs, which suggests that the new technique may be suitable for the clinical diagnosis of pleural effusion.
机译:胸腔积液是世界上最普遍的呼吸系统疾病之一。 目前的诊断技术包括胸部的病史和X射线或CT扫描成像的组合。 然而,这些技术在资源有限的环境中是昂贵的且不切实际的。 我们通过胸壁提出了一种基于声音传输的新方法,通过胸壁进入呼吸系统。 为了评估该技术,将频率范围与100Hz和1000Hz之间的正弦扫描信号传递到能够模拟健康和活化条件的人肺的幻像模型中。 计算和比较两个条件下模型的频率响应,以评估新方法的诊断性能。 结果表明,健康和活化肺的频率响应之间存在显着差异,这表明新技术可能适用于胸腔积液的临床诊断。

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