Saito Wakana, Omura Masaaki, Ketterling Jeffrey A, Hirata Shinnosuke, Yoshida Kenji, Yamaguchi Tadashi
Graduate School of Science and Engineering, Chiba University, Yayoicho, Inage, Chiba 263-8522, Japan.
Faculty and Engineering, Academic Assembly, University of Toyama, Toyama 930-8555, Japan.
Jpn J Appl Phys (2008). 2022 Jul;61(SG). doi: 10.35848/1347-4065/ac48d3. Epub 2022 May 30.
In a previous study, an annular-array transducer was employed to characterize homogeneous scattering phantoms and excised rat livers using backscatter envelope statistics and frequency domain analysis. A sound field correction method was also applied to take into account the average attenuation of the entire scattering medium. Here, we further generalized the evaluation of backscatter coefficient (BSC) using the annular array in order to study skin tissues with a complicated structure. In layered phantoms composed of two types of media with different scattering characteristics, the BSC was evaluated by the usual attenuation correction method, which revealed an expected large difference from the predicted BSC. In order to improve the BSC estimate, a correction method that applied the attenuation of each layer as a reference combined with a method that corrects based on the attenuation of the analysis position were applied. It was found that the method using the average attenuation of each layer is the most effective. This correction method is well adapted to the extended depth of field provided by an annular array.
在先前的一项研究中,使用环形阵列换能器,通过背向散射包络统计和频域分析来表征均匀散射体模和切除的大鼠肝脏。还应用了一种声场校正方法,以考虑整个散射介质的平均衰减。在此,我们进一步推广了使用环形阵列对背向散射系数(BSC)的评估,以便研究具有复杂结构的皮肤组织。在由两种具有不同散射特性的介质组成的分层体模中,通过常规衰减校正方法评估BSC,结果显示与预测的BSC存在预期的较大差异。为了改进BSC估计,应用了一种将每层的衰减作为参考的校正方法,并结合了一种基于分析位置的衰减进行校正的方法。结果发现,使用每层平均衰减的方法最为有效。这种校正方法非常适合环形阵列提供的扩展景深。