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基于光声技术的高强度聚焦超声消融实时监测:一项离体研究。

Real-time monitoring of high-intensity focused ultrasound ablations with photoacoustic technique: an in vitro study.

机构信息

Department of Mechanical Engineering, University of Kansas, Lawrence, KS 66045, USA.

出版信息

Med Phys. 2011 Oct;38(10):5345-50. doi: 10.1118/1.3638126.

Abstract

PURPOSE

The purpose of this study is to apply photoacoustic imaging (PAI) to monitor high intensity focused ultrasound (HIFU) process in real-time for accurate evaluation of thermal ablation outcomes.

METHODS

A photoacoustic (PA) imaging system was used to monitor HIFU ablation process in this study. Single-element, spherically focused ultrasonic transducers with center frequencies of 5 and 10 MHz were used to generate HIFU lesions and detect PA signals in beef kidney during HIFU treatments, respectively. A 25-μm diameter, T-type thermocouple was used to measure the temperature rise during the treatment as well. Thermal dose, which was used to indicate the coagulation of soft tissue, was calculated with the temperature measured by the thermocouple. Detected PA signals were then related to the coagulation of soft tissue through thermal dose calculations. In addition, PA signals from beef kidney coagulating under a constant temperature was obtained to show the changes of PA signals under a constant temperature during soft tissue coagulation.

RESULTS

PA amplitude increases during the HIFU process and tends to have a saturation stage after the soft tissue is completely coagulated, which is indicated by a 240 or more TD(43) minutes. Also, a linear relation between the PA signal amplitude changes and temperature was observed when monitoring the sole effect of temperature. In addition, PA amplitude changes finally reached a constant value during soft tissue coagulation under a constant temperature.

CONCLUSIONS

Through measurement of the photoacoustic signal, the authors demonstrated that monitoring thermal dose may be a more appropriate method in HIFU treatment than monitoring temperature.

摘要

目的

本研究旨在应用光声成像(PAI)实时监测高强度聚焦超声(HIFU)过程,以准确评估热消融效果。

方法

本研究使用光声(PA)成像系统监测 HIFU 消融过程。分别使用中心频率为 5MHz 和 10MHz 的单元件、球形聚焦超声换能器在牛肾中产生 HIFU 损伤并检测 HIFU 治疗过程中的 PA 信号。使用 25μm 直径的 T 型热电偶测量治疗过程中的温升。热剂量用于表示软组织的凝固程度,通过热电偶测量的温度进行计算。然后,通过热剂量计算将检测到的 PA 信号与软组织的凝固相关联。此外,还获得了在恒定温度下牛肾凝固的 PA 信号,以显示在软组织凝固过程中恒定温度下 PA 信号的变化。

结果

在 HIFU 过程中,PA 幅度增加,并且在软组织完全凝固后趋于达到饱和阶段,这由 240 分钟或更多的 TD(43)分钟表示。此外,当仅监测温度的影响时,观察到 PA 信号幅度变化与温度之间存在线性关系。此外,在恒定温度下软组织凝固过程中,PA 幅度变化最终达到恒定值。

结论

通过测量光声信号,作者证明在 HIFU 治疗中,监测热剂量可能比监测温度更合适。

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