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多参数监测和评估高强度聚焦超声(HIFU)沸腾的谐波运动成像为聚焦超声(HMIFU):一项离体可行性研究。

Multi-parametric monitoring and assessment of high-intensity focused ultrasound (HIFU) boiling by harmonic motion imaging for focused ultrasound (HMIFU): an ex vivo feasibility study.

机构信息

Department of Biomedical Engineering, Columbia University, New York, NY, USA.

出版信息

Phys Med Biol. 2014 Mar 7;59(5):1121-45. doi: 10.1088/0031-9155/59/5/1121. Epub 2014 Feb 20.

Abstract

Harmonic motion imaging for focused ultrasound (HMIFU) is a recently developed high-intensity focused ultrasound (HIFU) treatment monitoring method with feasibilities demonstrated in vitro and in vivo. Here, a multi-parametric study is performed to investigate both elastic and acoustics-independent viscoelastic tissue changes using the Harmonic Motion Imaging (HMI) displacement, axial compressive strain and change in relative phase shift during high energy HIFU treatment with tissue boiling. Forty three (n = 43) thermal lesions were formed in ex vivo canine liver specimens (n = 28). Two-dimensional (2D) transverse HMI displacement maps were also obtained before and after lesion formation. The same method was repeated in 10 s, 20 s and 30 s HIFU durations at three different acoustic powers of 8, 10, and 11 W, which were selected and verified as treatment parameters capable of inducing boiling using both thermocouple and passive cavitation detection (PCD) measurements. Although a steady decrease in the displacement, compressive strain, and relative change in the focal phase shift (Δϕ) were obtained in numerous cases, indicating an overall increase in relative stiffness, the study outcomes also showed that during boiling, a reverse lesion-to-background displacement contrast was detected, indicating potential change in tissue absorption, geometrical change and/or, mechanical gelatification or pulverization. Following treatment, corresponding 2D HMI displacement images of the thermal lesions also mapped consistent discrepancy in the lesion-to-background displacement contrast. Despite the expectedly chaotic changes in acoustic properties with boiling, the relative change in phase shift showed a consistent decrease, indicating its robustness to monitor biomechanical properties independent of the acoustic property changes throughout the HIFU treatment. In addition, the 2D HMI displacement images confirmed and indicated the increase in the thermal lesion size with treatment duration, which was validated against pathology. In conclusion, multi-parametric HMIFU was shown capable of monitoring and mapping tissue viscoelastic response changes during and after HIFU boiling, some of which were independent of the acoustic parameter changes.

摘要

高强度聚焦超声(HIFU)的谐波运动成像是一种最近开发的高强度聚焦超声(HIFU)治疗监测方法,在体外和体内都得到了可行性验证。在这里,进行了一项多参数研究,以调查在组织沸腾的高能 HIFU 治疗期间使用谐波运动成像(HMI)位移、轴向压缩应变和相对相位变化率来测量弹性和与声无关的粘弹性组织变化。在 28 个离体犬肝标本中形成了 43 个(n = 43)热损伤。在损伤形成前后还获得了二维(2D)横向 HMI 位移图。在 8、10 和 11 W 的三个不同声功率下,以 10 s、20 s 和 30 s 的 HIFU 持续时间重复了相同的方法,这些声功率被选择并通过热电偶和被动空化检测(PCD)测量验证为能够诱导沸腾的治疗参数。尽管在许多情况下,位移、压缩应变和焦点相位变化率(Δϕ)的相对变化均呈稳定下降趋势,表明相对刚度总体增加,但研究结果还表明,在沸腾过程中,检测到损伤与背景的反向位移对比,这表明组织吸收、几何形状变化和/或机械胶凝或粉碎的潜在变化。治疗后,热损伤的相应 2D HMI 位移图像也映射出损伤与背景的位移对比存在一致差异。尽管随着沸腾,声特性发生了预期的混乱变化,但相位变化率的相对变化仍呈持续下降趋势,表明其在整个 HIFU 治疗过程中独立于声特性变化监测生物力学特性的稳健性。此外,2D HMI 位移图像证实并表明了随着治疗时间的延长,热损伤的大小增加,这与病理学结果一致。总之,多参数 HMIFU 能够监测和映射 HIFU 沸腾过程中和之后组织粘弹性响应的变化,其中一些变化与声参数变化无关。

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