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基于多元探头和非线性脉冲反向散射的高强度聚焦超声治疗的相位校正。

Phase-Aberration Correction for HIFU Therapy Using a Multielement Array and Backscattering of Nonlinear Pulses.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2021 Apr;68(4):1040-1050. doi: 10.1109/TUFFC.2020.3030890. Epub 2021 Mar 26.

Abstract

Phase aberrations induced by heterogeneities in body wall tissues introduce a shift and broadening of the high-intensity focused ultrasound (HIFU) focus, associated with decreased focal intensity. This effect is particularly detrimental for HIFU therapies that rely on shock front formation at the focus, such as boiling histotripsy (BH). In this article, an aberration correction method based on the backscattering of nonlinear ultrasound pulses from the focus is proposed and evaluated in tissue-mimicking phantoms. A custom BH system comprising a 1.5-MHz 256-element array connected to a Verasonics V1 engine was used as a pulse/echo probe. Pulse inversion imaging was implemented to visualize the second harmonic of the backscattered signal from the focus inside a phantom when propagating through an aberrating layer. Phase correction for each array element was derived from an aberration-correction method for ultrasound imaging that combines both the beamsum and the nearest neighbor correlation method and adapted it to the unique configuration of the array. The results were confirmed by replacing the target tissue with a fiber-optic hydrophone. Comparing the shock amplitude before and after phase-aberration correction showed that the majority of losses due to tissue heterogeneity were compensated, enabling fully developed shocks to be generated while focusing through aberrating layers. The feasibility of using a HIFU phased-array transducer as a pulse-echo probe in harmonic imaging mode to correct for phase aberrations was demonstrated.

摘要

体壁组织不均匀性引起的相位像差导致高强度聚焦超声(HIFU)焦点发生偏移和展宽,同时焦点强度降低。对于依赖于在焦点处形成冲击波的 HIFU 治疗方法,如沸腾空化(BH),这种效应特别不利。本文提出了一种基于从焦点反向散射非线性超声脉冲的像差校正方法,并在组织模拟体模中进行了评估。一个由 1.5MHz 256 个阵元组成的定制 BH 系统,与 Verasonics V1 引擎相连,用作脉冲/回波探头。脉冲反转成像用于可视化穿过不均匀层传播时体模内焦点处反向散射信号的二次谐波。对每个阵元的相位校正源自一种超声成像的像差校正方法,该方法结合了波束求和和最近邻相关方法,并对其进行了独特的阵元配置。用光纤水听器代替靶组织来验证结果。比较相位像差校正前后的冲击波幅度表明,大部分由于组织不均匀性引起的损耗得到了补偿,从而能够在聚焦通过不均匀层时产生完全发展的冲击波。证明了使用 HIFU 相控阵换能器作为脉冲回波探头在谐波成像模式下校正相位像差的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2ce/8476183/1ff9d909f164/nihms-1739750-f0001.jpg

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