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Numerical analysis of backscatter properties of fast and slow waves in cancellous bone

机译:松质骨中快速慢波反散散性能的数值分析

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摘要

Fast and slow waves can propagate mainly in the trabecular and pore parts of cancellous bone, respectively. Their backscatter properties were numerically analyzed by finite-difference time-domain simulations. Numerical bone models, in which artificial absorbing layers were set at the back surfaces, were prepared, and an ultrasound pulse wave was transmitted from the front surface parallel to the main trabecular orientation. Only the backscattered waves were succeeded to isolate by differencing between two simulated waveforms obtained using the bone models with different thicknesses. The backscatter coefficients, which were the amplitude ratios of the backscattered waves to the incident waves, of the fast wave were not significantly correlated with porosity and mean intercept lengths (MILs) (R-2 = 0.29). However, the backscatter coefficients of the slow wave were significantly correlated with porosity (R-2 = 0.45-0.67) and MIL of the pore part in the ultrasound direction (R-2 = 0.64-0.80). (c) 2020 The Japan Society of Applied Physics
机译:快速和慢波可以分别主要在松粗骨的小梁和孔隙部分中繁殖。通过有限差分时间域模拟进行了数值分析了它们的反向散射特性。制备了数值骨模型,其中制备了人工吸收层,在后表面设定,并且从平行的前表面透射超声波脉冲波。仅通过使用具有不同厚度的骨模型获得的两个模拟波形之间,仅成功地将反向散射的波分离。作为入射波的反向散射波的幅度比的反向散射系数与孔隙率和平均截取长度(米尔)(R-2 <= 0.29)显着相关。然而,慢波的反向散射系数与超声方向上的孔隙率(R-2 = 0.45-0.67)和孔部的密耳(R-2 = 0.64-0.80)显着相关(R-2 = 0.64-0.80)。 (c)2020日本应用物理学会

著录项

  • 来源
    《Japanese journal of applied physics》 |2020年第3期|036504.1-036504.6|共6页
  • 作者

    Hosokawa Atsushi;

  • 作者单位

    Akashi Coll Dept Elect & Comp Engn Natl Inst Technol Akashi Hyogo 6748501 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
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