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用于超声手术的球形相控阵相对性能的理论评估。

A theoretical assessment of the relative performance of spherical phased arrays for ultrasound surgery.

作者信息

Gavrilov L R, Hand J W

机构信息

Department of Imaging, Hammersmith Hospital, London W12 OHS, UK.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2000;47(1):125-39. doi: 10.1109/58.818755.

Abstract

Computer modeling of spherical-section phased arrays for ultrasound surgery (tissue ablation) is described. The influence on performance of the number of circular elements (68 to 1024), their diameter (2.5 to 10 mm), frequency (1 to 2 MHz), and degree of sparseness in the array is investigated for elements distributed randomly or in square, annular, and hexagonal patterns on a spherical shell (radius of curvature, 120 mm). Criteria for evaluating the quality of the intensity distributions obtained when focusing the arrays both on and away from their center of curvature, and in both single focus and simultaneous multiple foci modes, are proposed. Of the arrays studied, the most favorable performance, for both modes, is predicted for 256 5-mm diameter, randomly distributed elements. For the single focus mode, this performed better than regular arrays of 255 to 1024 elements and, for the case of nine simultaneous foci produced on a coplanar 3x3 grid with 4-mm spacing, better than square, hexagonal, or annular distributed arrays with a comparable number of elements. Randomization improved performance by suppressing grating lobes significantly. For single focus mode, a several-fold decrease in the number of elements could be made without degrading the quality of the intensity distribution.

摘要

本文描述了用于超声手术(组织消融)的球形截面相控阵的计算机建模。研究了圆形元件数量(68至1024个)、元件直径(2.5至10毫米)、频率(1至2兆赫兹)以及元件在球壳(曲率半径为120毫米)上随机分布或呈方形、环形和六边形图案分布时阵列的稀疏程度对性能的影响。提出了在聚焦阵列时,无论是在曲率中心还是偏离曲率中心,以及在单焦点和同时多焦点模式下,评估所获得强度分布质量的标准。在所研究的阵列中,对于两种模式,预测直径为5毫米、随机分布的256个元件的阵列性能最为优异。对于单焦点模式,其性能优于255至1024个元件的规则阵列;对于在间距为4毫米的共面3×3网格上产生九个同时焦点的情况,其性能优于具有相当数量元件的方形、六边形或环形分布阵列。随机化通过显著抑制栅瓣提高了性能。对于单焦点模式,元件数量可以减少几倍而不降低强度分布的质量。

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