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超声场的时间反转。二、实验结果。

Time reversal of ultrasonic fields. Il. Experimental results.

作者信息

Wu F, Thomas J L, Fink M

机构信息

Lab. Ondes et Acoustique, Paris VII Univ.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 1992;39(5):567-78. doi: 10.1109/58.156175.

Abstract

For pt.I see ibid., vol.39, no.5, p.555-66 (1992). A time-reversal mirror (TRM) is made of an array of transmit-receive transducers. The incident pressure field is sampled, digitized, stored, time-reversed and then re-emitted. This process can be used to focus, through inhomogeneous media, on a reflective target that may behave as an acoustic source after being insonified TRM experiments using a 64-channel prototype are described, and the results are given. Focusing experiments conducted on point targets through different aberrating media are described. The major result shows that the time-reversal focusing technique compensates for all the distortions whatever the TRM-aberrator distance. When the medium contains several targets, the authors show that the time-reversal process can be iterated in order to focus on the most reflective one. Lithotripsy applications are also discussed. Kidney stones are spatially extended targets and TRM experiments have been conducted on several kidney stones located behind inhomogeneous media. They show that the iterative TRM process is able to select one of the kidney stones and to focus on a small portion of it.

摘要

关于第一部分,见同出处,第39卷,第5期,第555 - 66页(1992年)。时间反转镜(TRM)由收发换能器阵列构成。入射压力场被采样、数字化、存储、时间反转,然后重新发射。此过程可用于通过非均匀介质聚焦于一个反射目标,该目标在被声照射后可能充当声源。描述了使用64通道原型进行的TRM实验,并给出了结果。描述了通过不同像差介质对点状目标进行的聚焦实验。主要结果表明,无论TRM与像差器的距离如何,时间反转聚焦技术都能补偿所有失真。当介质中有多个目标时,作者表明时间反转过程可以迭代,以便聚焦于反射最强的目标。还讨论了碎石术的应用。肾结石是空间扩展目标,已对位于非均匀介质后方的多个肾结石进行了TRM实验。他们表明,迭代TRM过程能够选择其中一颗肾结石并聚焦于其一小部分。

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