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通过使用相变纳米液滴和多焦点超声实现高强度聚焦超声消融的加热效率提升。

Improving the heating efficiency of high intensity focused ultrasound ablation through the use of phase change nanodroplets and multifocus sonication.

机构信息

Department of Biomedical Engineering, Vanderbilt University, Nashville Tennessee 37212, United States of America.

出版信息

Phys Med Biol. 2020 Oct 12;65(20):205004. doi: 10.1088/1361-6560/ab9559.

Abstract

Thermal ablation by ultrasound is being explored as a local therapy for cancers of soft tissue, such as the liver or breast. One challenge for these treatments are off-target effects, including heating outside of the intended region or skin burns. Improvements in heating efficiency can mitigate these undesired outcomes, and here, we describe methods for using phase-shift nanodroplets (PSNDs) with multi-focus sonications to enhance volumetric ablation and ablation efficiency at constant powers while increasing the pre-focal temperature by less than 6 [Formula: see text]C. Multi-focus ablation with 4 foci performed the best and achieved a mean ablation volume of 120.2 ± 22.4 mm and ablation efficiency of 0.04 mm J versus an ablation volume of 61.2 ± 21.16 mm and ablation efficiency of 0.02 mm J in single focus case. The combined use of PSNDs with multi-focal ultrasound presented here is a new approach to increasing ablation efficiency while reducing off-target effects and could be generally applied in various focused ultrasound thermal ablation treatments.

摘要

超声热消融技术正在被探索用于软组织癌症的局部治疗,如肝脏或乳腺的癌症治疗。这些治疗方法存在一些挑战,包括非目标区域的加热或皮肤灼伤等副作用。提高加热效率可以减轻这些不良后果,在这里,我们描述了使用相移纳米液滴(PSNDs)与多焦点超声联合的方法,以在保持恒定功率的情况下增强容积消融和消融效率,同时将焦前温度升高幅度控制在 6°C 以内。四焦点的多焦点消融效果最佳,实现了平均消融体积 120.2 ± 22.4mm 和消融效率 0.04mmJ,而单焦点情况下的消融体积为 61.2 ± 21.16mm,消融效率为 0.02mmJ。本文提出的将 PSNDs 与多焦点超声联合使用是一种提高消融效率、降低副作用的新方法,可广泛应用于各种聚焦超声热消融治疗中。

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