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High-Intensity Focused Ultrasound Thermal Lesion Detection Using Entropy Imaging of Ultrasound Radio Frequency Signal Time Series

机译:使用超声射频信号时间序列熵成像的高强度聚焦超声波热病变检测

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Background: During the past few decades, high-intensity focused ultrasound (HIFU) modality has been gaining surging interest in various therapeutic applications such as non- or minimally-invasive cancer treatment. Among other attributes, robust and real-time HIFU treatment monitoring and lesion detection have become essential issues for successful clinical acceptance of the modality. More recently, ultrasound radio frequency (RF) time series imaging has been studied by a number of researchers. Materials and Methods: The objective of this study is to investigate the applicability of entropy parameter of RF time series of ultrasound backscattered signals, a. k. a. Entropy imaging, toward HIFU thermal lesion detection. To this end, five fresh ex vivo porcine muscle tissue samples were exposed to HIFU exposures with total acoustic powers ranging from 30 to 110 Watts. The contrast-to-speckle ratio (CSR) values of the entropy images and their corresponding B-mode images of pre-, during- and post-HIFU exposure for each acoustic power were calculated. Results: The novelty of this study is the use of Entropy parameter on ultrasound RF time series for the first time. Statistically significant differences were obtained between the CSR values for the B mode and entropy images at various acoustic powers. In case of 110 Watt, a CSR value 3.4 times higher than B-mode images was accomplished using the proposed method. Furthermore, the proposed method is compared with the scaling parameter of Nakagami imaging and same data which are used in this study. Conclusion: Entropy has the potential for using as an imaging parameter for differentiating lesions in HIFU surgery.
机译:背景:在过去的几十年中,高强度聚焦超声(HIFU)模态已经在各种治疗应用中获得了汹涌的兴趣,例如非或微创癌症治疗。其他属性,鲁棒和实时HIFU治疗监测和病变检测已成为成功临床接受的重要问题。最近,通过许多研究人员研究了超声射频(RF)时间序列成像。材料和方法:本研究的目的是研究RF时间序列超声波散射信号的熵参数的适用性,a。 k。一种。熵成像,朝向HIFU热病变检测。为此,将五种新鲜的离体猪肌肉组织样品暴露于Hifu曝光,总声功率范围为30至110瓦。计算熵图像的对比度与斑点比(CSR)和它们对每个声功率的HIFU预曝光的相应B模式图像。结果:本研究的新颖性是首次在超声波RF时间序列上使用熵参数。在B模式的CSR值和各种声电源处的熵图像之间获得统计上显着的差异。在110瓦的情况下,使用所提出的方法完成比B模式图像高的CSR值3.4倍。此外,将所提出的方法与本研究中使用的Nakagami成像和相同数据进行比较。结论:熵具有用作分化HIFU手术中病变的成像参数的可能性。

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