Technique to apply holographic interferometry to excised animal lungs

C. Stanley, M. Pathak, G. Nuñez, J. Sneckenberger, T. Whitmoyer
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引用次数: 0

Abstract

Frequency analysis of acoustic waves sent into, and reflected from, lung airways is being studied as a possible early indicator of lung disease. To help evaluate the acoustic impedance of the lung, a method has been developed to determine which parts of the surface of an excised lung are responding to the acoustic excitation via the trachea. Holographic interferometry, a very sensitive technique that can measure movements of a few mu m, is being used to detect the lung-surface movement. Lungs from normal guinea pigs are being analyzed. Acoustic waves at selected frequencies are sent into the trachea and a double-exposure holograph is made of the lung. Each exposure is approximately 4 ms in duration with a separation of 2 ms. The laser pulse is obtained by interrupting the beam from a 0.5-w argon ion laser. Fringe patterns produced are an indication of lung movement. Work is continuing to distinguish normal and diseased lungs using a combination of acoustic excitation and holographic interferometric techniques.<>
应用全息干涉测量术切除动物肺的技术
人们正在研究进入和反射肺部气道的声波的频率分析,以作为肺部疾病的可能早期指标。为了帮助评估肺的声阻抗,已经开发了一种方法来确定切除肺表面的哪些部分通过气管响应声激励。全息干涉测量是一种非常灵敏的技术,可以测量几微米的运动,被用来检测肺表面的运动。正在分析正常豚鼠的肺。选定频率的声波被送入气管,肺部形成双曝光全息图。每次曝光持续时间约为4毫秒,间隔为2毫秒。激光脉冲是通过中断0.5 w氩离子激光器的光束获得的。产生的条纹图案是肺部运动的指示。利用声激发和全息干涉技术相结合的方法区分正常和病变肺的工作正在继续进行。
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