首页> 外文会议>Ultrasonics Symposium (IUS), 2009 >Spectral analysis of ultrasound backscatter for characterization of HIFU lesions in cardiac tissue high-frequency imaging
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Spectral analysis of ultrasound backscatter for characterization of HIFU lesions in cardiac tissue high-frequency imaging

机译:超声背向散射的光谱分析用于表征心脏组织高频成像中的HIFU病变

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Conventional methods of tissue ablation for treatment of cardiac arrhythmia have their limitations, including the requirement for tissue contact and limited ability to create transmural lesions with minimal collateral damage. As part of a larger effort to create an efficient therapeutic ultrasound (US) system for cardiac ablation, this pilot study employed high-frequency US imaging to characterize the temporal evolution of high-intensity focused US (HIFU) lesion formation by rapid M-mode imaging and the spatial extent of lesions by spectral analysis of US backscatter from B-mode images. M-mode imaging was found to be able to detect changes in the tissue due to cavitation. 3D B-mode imaging provided detailed images of lesions as small as 1 mm wide and 3 mm long. The spectral analysis showed that the midband fit and intercept of the linear regression to the calibrated spectra increased after lesion formation, while slope decreased. Together these methods indicate that high-frequency imaging can be an effective tool for HIFU lesion characterization.
机译:用于治疗心律不齐的常规组织消融方法有其局限性,包括对组织接触的要求以及产生具有最小附带损害的透壁病变的能力有限。作为创建用于心脏消融的高效治疗超声(US)系统的一项较大努力的一部分,该先期研究采用了高频US成像技术来表征通过快速M模式形成高强度聚焦US(HIFU)病变的时间演变通过对B模式图像的US反向散射进行光谱分析,对病变的成像和病变范围进行分析。发现M-模式成像能够检测由于空化引起的组织变化。 3D B模式成像可提供小至1毫米宽,3毫米长的病变的详细图像。光谱分析表明,病灶形成后,中频拟合和对标定光谱的线性回归截距增大,而斜率减小。这些方法共同表明,高频成像可以成为HIFU病变特征的有效工具。

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