高强度超声暴露的定量超声表征

V. Barrère, E. Franceschini, D. Melodelima
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摘要

高强度超声(HIU)在许多医学疾病的治疗中被证明是有价值的,因为它使用美国能量而没有切口或辐射。开发一种有效的方法来指导HIU治疗仍然是必要的。基于光谱的定量超声(QUS)参数的变化与HIU暴露期间的温度变化相关(Ghoshal等)。Ieee uffc 2016)。本研究的目的是量化暴露在离体牛肝脏后,由于温度升高而引起的QUS参数的变化。QUS实验在高频率(12-38 MHz)下进行,以深入了解HIU暴露后肝组织在37°C至80°C的固定温度下引起背散射特性变化的具体变化。使用孔径直径为4厘米的平面3mhz换能器将猪肝样品暴露于HIU中。将样品加热至37、50、60、65、70、75、80℃。在达到所需温度后,将样品在病变中心切成两半。使用中心频率为25 MHz的RMV710探头的Visualsonics Vevo 770成像系统记录切割样品的美国反向散射信号。采用参考模体技术估算后向散射系数,采用标准代入法确定衰减系数。利用球形高斯模型(SGM)或结构因子模型(SFM)拟合测量的BSCs,估计有效散射体直径(ESD)和声浓度(EAC),从而估计结构散射体特性。在HIU处理的样品中,稀疏SGM和浓缩SFM估计的QUS参数差异很大,这表明处理过的肝脏可以被认为是浓缩培养基。结果表明,SFM估算的综合BSC和ESD均随温度的升高而升高。
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Characterization of High Intensity Ultrasound Exposures by Quantitative Ultrasound
High Intensity Ultrasound (HIU) is of proven value in the treatment of many medical disorders by using US energy without incisions or radiation. The development of an effective method for guiding HIU therapies remains necessary. Changes in spectral-based Quantitative UltraSound (QUS) parameters have been correlated with the temperature changes during HIU exposure (Ghoshal et al. IEEE UFFC 2016). The aim of this study is to quantify the changes in QUS parameters due to temperature elevation after HIU exposure of ex vivo bovine livers. The QUS experiments are conducted in high frequencies (12-38 MHz) to provide insight into the specific changes in liver tissues that cause the changes of backscatter properties for fixed temperature ranging from 37°C up to 80°C after HIU exposure.Samples of porcine livers are exposed to HIU using a plane 3 MHz transducer with aperture diameter of 4 cm. Samples were heated up to 37, 50, 60, 65, 70, 75, 80°C. After reaching the desired temperature, the sample is cut in half at the center of the lesion. US backscatter signals were recorded from the cut samples by using the Visualsonics Vevo 770 imaging system with the RMV710 probe of center frequency 25 MHz. The backscatter coefficients (BSCs) were estimated using the reference phantom technique and the attenuation coefficients were determined using a standard substitution method.Structural scatterer properties were estimated by fitting the measured BSCs with the spherical Gaussian model (SGM) or with the Structure Factor Model (SFM) to estimate the effective scatterer diameter (ESD) and acoustic concentration (EAC). The QUS parameters estimated by the sparse SGM and the concentrated SFM differ strongly from each other for HIU treated samples and suggests that the treated livers can be considered as concentrated media. Results showed that both integrated BSC and ESD estimated by the SFM increased as a function of temperature.
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