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Noninvasive measurement of local thermal diffusivity using backscattered ultrasound and focused ultrasound heating.

机译:使用反向散射超声和聚焦超声加热对局部热扩散率进行无创测量。

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摘要

Previously, noninvasive methods of estimating local tissue thermal and acoustic properties using backscattered ultrasound have been proposed in the literature. In this article, a noninvasive method of estimating local thermal diffusivity in situ during focused ultrasound heating using beamformed acoustic backscatter data and applying novel signal processing techniques is developed. A high intensity focused ultrasound (HIFU) transducer operating at subablative intensities is employed to create a brief local temperature rise of no more than 10 degrees C. Beamformed radio-frequency (RF) data are collected during heating and cooling using a clinical ultrasound scanner. Measurements of the time-varying "acoustic strain", that is, spatiotemporal variations in the RF echo shifts induced by the temperature related sound speed changes, are related to a solution of the heat transfer equation to estimate the thermal diffusivity in the heated zone. Numerical simulations and experiments performed in vitro in tissuemimicking phantoms and excised turkey breast muscle tissue demonstrate agreement between the ultrasound derived thermal diffusivity estimates and independent estimates made by a traditional hot-wire technique. The new noninvasive ultrasonic method has potential applications in thermal therapy planning and monitoring, physiological monitoring and as a means of noninvasive tissue characterization.
机译:以前,在文献中已经提出了使用反向散射超声来估计局部组织的热和声学特性的非侵入性方法。在本文中,开发了一种非侵入性方法,该方法使用波束形成的声反向散射数据并应用新颖的信号处理技术来估计聚焦超声加热过程中的局部热扩散率。采用在消融强度下工作的高强度聚焦超声(HIFU)换能器,以产生不超过10摄氏度的短暂局部温度上升。使用临床超声扫描仪在加热和冷却过程中收集波束形成的射频(RF)数据。随时间变化的“声学应变”的测量,即由温度相关的声速变化引起的RF回波偏移的时空变化,与传热方程的解有关,以估计加热区域中的热扩散率。在模拟人体模型和切除的火鸡胸肌组织中进行的体外数值模拟和实验表明,超声导出的热扩散率估算值与传统热线技术进行的独立估算值之间具有一致性。新的非侵入性超声方法在热疗计划和监测,生理监测以及作为非侵入性组织表征的手段中具有潜在的应用。

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