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Measurement of acoustic impedance for normal, fibrosis and NASH livers by using bio-acoustic microsropy

机译:使用生物声学微晶测量正常,纤维化和肿瘤肝的声阻抗

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Early diagnosis for non-alcoholic steatohepatitis (NASH) is desired because it may progress to cirrhosis or finally hepatocellular carcinoma in the severe case. To propose the possible noninvasive diagnosis using ultrasound, we aim to summarize the change of the tissue property. As a basic study, this report demonstrates the acoustic impedance of mouse livers in case of the normal, the liver cirrhosis and the NASH model using bio-acoustic microscopy. To measure the acoustic impedance, a transducer with 80-MHz center frequency, which is incorporated in a bio-acoustic microscopy system, was employed. The value could be calculated based on the analysis of the echo amplitude, and 2D image of acoustic impedance can be obtained by scanning the transducer. The 2D image demonstrated that the tissue structure is homogeneous in normal liver. In contrast, the pattern of random granular texture like lipid droplet was found in NASH liver. Based on statistical analysis, it was found that the acoustic impedance in case of NASH is lowest among all models.
机译:需要早期诊断非酒精性脱脂性炎(NASH),因为它可能在严重情况下进入肝硬化或最终肝细胞癌。为使用超声提出可能的非侵入性诊断,我们旨在总结组织性能的变化。作为一个基本研究,本报告显示了在正常,肝硬化和使用生物声学显微镜的情况下的小鼠肝脏的声阻抗。为了测量声阻抗,采用具有80-MHz中心频率的换能器,其结合在生物声学显微镜系统中。可以基于对回波幅度的分析来计算该值,并且可以通过扫描换能器来获得声阻的2D图像。 2D图像表明组织结构在正常肝脏中均匀。相比之下,在腹水肝脏中发现了脂质液滴等随机粒状纹理的模式。基于统计分析,发现所有模型中纳什的声阻抗最低。

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