利用声全息法对全填充随机多元素治疗阵列的通道进行相位校正

IF 0.9 4区 物理与天体物理 Q4 ACOUSTICS
S. A. Tsysar, P. B. Rosnitskiy, S. A. Asfandiyarov, S. A. Petrosyan, V. A. Khokhlova, O. A. Sapozhnikov
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引用次数: 0

摘要

摘要 采用声全息法对 256 元超声波换能器阵列进行了治疗聚焦表征。等面积多边形阵列的元件以不规则模式密集排列在曲率半径为 150 毫米、直径为 200 毫米的球形凹面上。阵列的中心频率为 1.2 兆赫,设计用于在水中工作。根据阵列表面的全息重建法向速度分布,研究了单个阵列元件的性能。结果表明,在对元件施加相同电信号的情况下,它们的声学响应相对于标称值有相位偏差,这可能是由阵列表面的非球面性或电匹配网络引入的额外相位延迟造成的。为了补偿检测到的元件寄生相移并恢复辐射表面的有效球形度,使用了 Verasonics V-1 控制系统。校正后测量到的全息图,以及水听器分别测量到的焦点区域形状和焦点处的声压幅值都表明,所提出的方法能高精度地重建阵列的额定工作参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Phase Correction of the Channels of a Fully Populated Randomized Multielement Therapeutic Array Using the Acoustic Holography Method

Phase Correction of the Channels of a Fully Populated Randomized Multielement Therapeutic Array Using the Acoustic Holography Method

The acoustic holography method was used to characterize a therapeutic focused fully populated 256-element ultrasonic transducer array. Elements of the array with the shape of equal area polygons are densely arranged in an irregular pattern on a spherically concave surface with a radius of curvature of 150 mm and a diameter of 200 mm. The array has a central frequency of 1.2 MHz and is designed to operate in water. The performance of individual array elements was studied based on the holographically reconstructed normal velocity distribution over the array surface. It was shown that with the same electrical signals applied to the elements, their acoustic responses had a phase deviation relative to the nominal values, which can be caused either by the asphericity of the array surface, or by the introduction of additional phase delays by the electrical matching network. To compensate for the detected parasitic phase shifts of the elements and restore the effective sphericity of the radiating surface, the Verasonics V-1 control system was used. The hologram measured after making the correction, as well as the shape of the focal region and acoustic pressure magnitude at the focus, separately measured by a hydrophone, showed that the proposed method reconstructed the nominal operating parameters of the array with high accuracy.

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来源期刊
Acoustical Physics
Acoustical Physics 物理-声学
CiteScore
1.60
自引率
50.00%
发文量
58
审稿时长
3.5 months
期刊介绍: Acoustical Physics is an international peer reviewed journal published with the participation of the Russian Academy of Sciences. It covers theoretical and experimental aspects of basic and applied acoustics: classical problems of linear acoustics and wave theory; nonlinear acoustics; physical acoustics; ocean acoustics and hydroacoustics; atmospheric and aeroacoustics; acoustics of structurally inhomogeneous solids; geological acoustics; acoustical ecology, noise and vibration; chamber acoustics, musical acoustics; acoustic signals processing, computer simulations; acoustics of living systems, biomedical acoustics; physical principles of engineering acoustics. The journal publishes critical reviews, original articles, short communications, and letters to the editor. It covers theoretical and experimental aspects of basic and applied acoustics. The journal welcomes manuscripts from all countries in the English or Russian language.
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