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Monitoring imaging of lesions induced by high intensity focused ultrasound based on a matching pursuit method

机译:基于匹配追踪方法的高强度聚焦超声诱发病变的影像学监测

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We investigated the feasibility of a monitoring imaging method to visualize and evaluate the high intensity focused ultrasound (HIFU) induced lesion in vitro during and after their formation, which was based on a modified matching pursuit algorithm (MP). The method is based on the concept of sparse signal approximation in an overcomplete dictionary composed of unit-norm vectors that mimic the ultrasonic pulse-echo to be estimated. Each ultrasonic echo is principally represented by a unit-norm vector and therefore has a physical interpretation. we use the MP method to analyze noisy ultrasonic echo obtained in different stages during and after HIFU treatment and decompose the noisy echo into unit-norm vectors. The approximation of the echo can be obtained by the reconstruction result with several large coefficient unit-norm vectors. In the current research we compared lesion sizes obtained from our method, from measurement of physical lesions after exposure, ultrasonic integrated backscatter (IBS) images and from conventional B-mode images, no matter with or without hyperecho. It was found in freshly excised bovine livers that more precise definition of the treated area was obtained from the MP images than from the IBS images and the conventional B-mode images. When comparing to physical lesion sizes, there was no significant difference. We demonstrated the feasibility of our proposed MP-based method for the localization of HIFU-induced lesions immediately after HIFU treatment. Meanwhile our method can detect lesion locations even without the appearance of hyperecho.
机译:我们研究了一种监测成像方法的可行性,该方法基于改进的匹配追踪算法(MP),在成像过程中和成像后评估高强度聚焦超声(HIFU)诱发的病变。该方法基于超完备字典中稀疏信号近似的概念,该字典由单位模量向量组成,该单位模量向量模仿待估计的超声脉冲回波。每个超声回波主要由单位范数矢量表示,因此具有物理解释。我们使用MP方法分析HIFU治疗期间和治疗后不同阶段获得的噪声超声回声,并将噪声回声分解为单位范数矢量。回波的近似值可以通过使用几个大系数单位范数矢量的重建结果来获得。在当前的研究中,我们比较了使用我们的方法,通过测量暴露后的物理病变,超声积分背向散射(IBS)图像和常规B模式图像获得的病变大小,无论是否有高回声。发现在新鲜切除的牛肝中,从MP图像获得的治疗区域比从IBS图像和常规B模式图像获得的更精确的定义。与物理病变的大小相比,没有显着差异。我们证明了我们提出的基于MP的方法在HIFU治疗后立即定位HIFU诱导的病变的可行性。同时,即使没有出现高回声,我们的方法也可以检测病变位置。

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