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首页> 外文期刊>The Journal of the Acoustical Society of America >Modeling sound transmission through the pulmonary system and chest with application to diagnosis of a collapsed lung
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Modeling sound transmission through the pulmonary system and chest with application to diagnosis of a collapsed lung

机译:模拟通过肺系统和胸部的声音传输,并应用于肺塌陷的诊断

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A theoretical and experimental study was undertaken to examine the feasibility of unsing audible-frequency vibro-acoustic waves for diagnosis of pneumothorax, a collapsed lung. The hypothesis was that the acoustic response of the chest to external excitation would change with this condition. In experimental canine studies, external acoustic energy was introduced into the trachea via an endotracheal tube. For the control (nonpneumothorax) state, it is hypothesized that sound waves primarily travel through the airways, couple to the lung parenchyma, and then are transmitted directly to the chest wall. In contradistinction, when a pneumothorax is present the intervening air presents an added barrier to efficient acoustic energy transfer. Theoretical models of sound transmission through the pulmonary system and chest region to the chest wall surface are developed to more clearly understand the mechanisms of intensity loss when a pneumothorax is present, relative to a baseline case. These models predict significant decreases in acoustic transmission strength when a pneumothorax is present, in qualitative agreement with experimental measurements. Development of the models, their extension via finite element analysis, and comparisons with experimental canine studies are reviewed.
机译:进行了理论和实验研究,以检验使用非声频振动声波诊断肺气胸(肺萎陷)的可行性。假设是在这种情况下,胸部对外部刺激的声音响应会改变。在实验犬的研究中,外部声能通过气管导管被引入气管。对于对照(非气胸)状态,假设声波主要通过气道传播,耦合到肺实质,然后直接传播到胸壁。相反,当存在气胸时,中间的空气对有效的声能传递增加了障碍。建立了通过肺系统和胸部区域到胸壁表面的声音传输的理论模型,可以更清楚地了解相对于基线病例,当存在气胸时强度丧失的机制。这些模型预测,当存在气胸时,声音传输强度会显着降低,这与实验测量结果在质量上吻合。审查了模型的开发,通过有限元分析进行的扩展以及与实验犬研究的比较。

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