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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Nakagami imaging for detecting thermal lesions induced by high-intensity focused ultrasound in tissue
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Nakagami imaging for detecting thermal lesions induced by high-intensity focused ultrasound in tissue

机译:Nakagami成像用于检测组织中高强度聚焦超声引起的热损伤

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High-intensity focused ultrasound induces focalized tissue coagulation by increasing the tissue temperature in a tight focal region. Several methods have been proposed to monitor high-intensity focused ultrasound-induced thermal lesions. Currently, ultrasound imaging techniques that are clinically used for monitoring high-intensity focused ultrasound treatment are standard pulse-echo B-mode ultrasound imaging, ultrasound temperature estimation, and elastography-based methods. On the contrary, the efficacy of two-dimensional Nakagami parametric imaging based on the distribution of the ultrasound backscattered signals to quantify properties of soft tissue has recently been evaluated. In this study, ultrasound radio frequency echo signals from ex vivo tissue samples were acquired before and after high-intensity focused ultrasound exposures and then their Nakagami parameter and scaling parameter of Nakagami distribution were estimated. These parameters were used to detect high-intensity focused ultrasound-induced thermal lesions. Also, the effects of changing the acoustic power of the high-intensity focused ultrasound transducer on the Nakagami parameters were studied. The results obtained suggest that the Nakagami distribution's scaling and Nakagami parameters can effectively be used to detect high-intensity focused ultrasound-induced thermal lesions in tissue ex vivo. These parameters can also be used to understand the degree of change in tissue caused by high-intensity focused ultrasound exposures, which could be interpreted as a measure of degree of variability in scatterer concentration in various parts of the high-intensity focused ultrasound lesion.
机译:高强度聚焦超声通过增加紧密聚焦区域的组织温度来诱导聚焦组织凝结。已经提出了几种方法来监测高强度聚焦超声引起的热损伤。当前,临床上用于监视高强度聚焦超声治疗的超声成像技术是标准脉冲回波B型超声成像,超声温度估计和基于弹性成像的方法。相反,最近已经评估了基于超声背向散射信号分布的二维Nakagami参数成像对软组织特性进行量化的功效。在这项研究中,从高强度聚焦超声暴露之前和之后获取了来自离体组织样本的超声射频回波信号,然后估计了它们的Nakagami参数和Nakagami分布的缩放参数。这些参数用于检测高强度聚焦超声引起的热损伤。此外,还研究了改变高强度聚焦超声换能器的声功率对中上参数的影响。获得的结果表明,Nakagami分布的缩放比例和Nakagami参数可以有效地用于检测离体组织中高强度聚焦超声诱导的热损伤。这些参数还可以用来了解由高强度聚焦超声暴露引起的组织变化程度,这可以解释为高强度聚焦超声损伤各个部位散射体浓度变化程度的度量。

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