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用于治疗超声应用的稳健且耐用的变迹和吸收体仿真模体。

Robust and durable aberrative and absorptive phantom for therapeutic ultrasound applications.

机构信息

Center for Industrial and Medical Ultrasound, Applied Physics Laboratory, University of Washington, 1013 NE 40th Street, Seattle, Washington 98105, USA.

Physics Faculty, Moscow State University, Moscow 119991, Russia.

出版信息

J Acoust Soc Am. 2022 May;151(5):3007. doi: 10.1121/10.0010369.

Abstract

Phase aberration induced by soft tissue inhomogeneities often complicates high-intensity focused ultrasound (HIFU) therapies by distorting the field and, previously, we designed and fabricated a bilayer gel phantom to reproducibly mimic that effect. A surface pattern containing size scales relevant to inhomogeneities of a porcine body wall was introduced between gel materials with fat- and muscle-like acoustic properties-ballistic and polyvinyl alcohol gels. Here, the phantom design was refined to achieve relevant values of ultrasound absorption and scattering and make it more robust, facilitating frequent handling and use in various experimental arrangements. The fidelity of the interfacial surface of the fabricated phantom to the design was confirmed by three-dimensional ultrasound imaging. The HIFU field distortions-displacement of the focus, enlargement of the focal region, and reduction of focal pressure-produced by the phantom were characterized using hydrophone measurements with a 1.5 MHz 256-element HIFU array and found to be similar to those induced by an ex vivo porcine body wall. A phase correction approach was used to mitigate the aberration effect on nonlinear focal waveforms and enable boiling histotripsy treatments through the phantom or body wall. The refined phantom represents a practical tool to explore HIFU therapy systems capabilities.

摘要

软组织非均质性引起的相位差常常使高强度聚焦超声(HIFU)治疗复杂化,因为它会使声场变形。在此之前,我们设计并制作了一种双层凝胶体模,以可重复的方式模拟这种效果。在具有脂肪和肌肉样声特性(弹道和聚乙烯醇凝胶)的凝胶材料之间引入了包含与猪体壁非均质性相关的尺寸比例的表面图案。在这里,对该体模设计进行了改进,以实现相关的超声吸收和散射值,并使其更坚固,便于频繁处理和用于各种实验布置。通过三维超声成像确认了所制造的体模的界面表面对设计的保真度。使用具有 1.5MHz 256 元 HIFU 阵列的水听器测量来表征该体模产生的 HIFU 场失真(焦点的位移、焦点区域的扩大和焦点压力的降低),并发现其与离体猪体壁产生的失真相似。使用相位校正方法来减轻该体模对非线性焦点波形的像差影响,并能够通过该体模或体壁进行沸腾空化治疗。改进后的体模是探索 HIFU 治疗系统能力的实用工具。

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