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Displacement analysis of diagnostic ultrasound backscatter: A methodology for characterizing modeling and monitoring high intensity focused ultrasound therapy

机译:诊断超声反向散射的位移分析:表征建模和监测高强度聚焦超声治疗的方法

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摘要

Accurate monitoring of high intensity focused ultrasound (HIFU) therapy is critical for widespread clinical use. Pulse-echo diagnostic ultrasound (DU) is known to exhibit temperature sensitivity through relative changes in time-of-flight between two sets of radio frequency (RF) backscatter measurements, one acquired before and one after therapy. These relative displacements, combined with knowledge of the exposure protocol, material properties, heat transfer, and measurement noise statistics, provide a natural framework for estimating the administered heating, and thereby therapy. The proposed method, termed displacement analysis, identifies the relative displacements using linearly independent displacement patterns, or modes, each induced by a particular time-varying heating applied during the exposure interval. These heating modes are themselves linearly independent. This relationship implies that a linear combination of displacement modes aligning the DU measurements is the response to an identical linear combination of heating modes, providing the heating estimate. Furthermore, the accuracy of coefficient estimates in this approximation is determined a priori, characterizing heating, thermal dose, and temperature estimates for any given protocol. Predicted performance is validated using simulations and experiments in alginate gel phantoms. Evidence for a spatially distributed interaction between temperature and time-of-flight changes is presented.
机译:准确监测高强度聚焦超声(HIFU)治疗对于广泛的临床应用至关重要。众所周知,脉冲回波诊断超声(DU)通过两组射频(RF)反向散射测量之间的飞行时间的相对变化来显示温度敏感性,其中一组在治疗之前和之后进行。这些相对位移,加上对暴露协议,材料特性,热传递和测量噪声统计信息的了解,为估算所施加的热量以及治疗提供了自然的框架。所提出的称为位移分析的方法使用线性独立的位移模式或模式来识别相对位移,每个模式或模式均由在曝光间隔期间施加的特定时变加热引起。这些加热模式本身是线性独立的。这种关系意味着,与DU测量值对齐的位移模式的线性组合是对加热模式相同的线性组合的响应,从而提供了加热估计。此外,此近似值中系数估计的准确性是事先确定的,它表征了任何给定协议的加热,热剂量和温度估计。使用藻酸盐凝胶体模进行仿真和实验验证了预测的性能。提出了温度和飞行时间变化之间空间分布相互作用的证据。

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