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从背向散射超声回波估计相关长度时局部衰减近似的影响。

Impact of local attenuation approximations when estimating correlation length from backscattered ultrasound echoes.

作者信息

Bigelow Timothy A, O'Brien William D

机构信息

Department of Electrical Engineering, University of North Dakota, Box 7165, Grand Forks, North Dakota 58202, USA.

出版信息

J Acoust Soc Am. 2006 Jul;120(1):546-53. doi: 10.1121/1.2208456.

Abstract

Estimating the characteristic correlation length of tissue microstructure from the backscattered power spectrum could improve the diagnostic capability of medical ultrasound. Previously, size estimates were obtained after compensating for source focusing, the frequency-dependent attenuation along the propagation path (total attenuation), and the frequency-dependent attenuation in the scattering region (local attenuation). In this study, the impact of approximations of the local attenuation on the scatterer size estimate was determined using computer simulations and theoretical analysis. The simulations used Gaussian impedance distributions with an effective radius of 25 microm randomly positioned in a homogeneous half-space sonified by a spherically focused source (f/1 to f/4). The approximations of the local attenuation that were assessed neglected local attenuation (i.e., assume 0 dB/cm-MHz) neglected frequency dependence of the local attenuation, and assumed a finite frequency dependence (i.e., 0.5 dB/cm-MHz) independent of the true attenuation of the medium. Errors in the scatterer size estimate due to the local attenuation approximations increased with increasing window length, increasing true local attenuation and increasing f number. The most robust estimates were obtained when the local attenuation was approximated by a tissue-independent attenuation value that was greater than 70% of the largest attenuation expected in the tissue region of interest.

摘要

从背向散射功率谱估计组织微观结构的特征相关长度可以提高医学超声的诊断能力。此前,在补偿了源聚焦、沿传播路径的频率依赖性衰减(总衰减)以及散射区域的频率依赖性衰减(局部衰减)之后获得了尺寸估计值。在本研究中,使用计算机模拟和理论分析确定了局部衰减近似对散射体尺寸估计的影响。模拟使用了有效半径为25微米的高斯阻抗分布,这些分布随机放置在由球面聚焦源(f/1至f/4)照射的均匀半空间中。所评估的局部衰减近似忽略了局部衰减(即假设为0 dB/cm-MHz)、忽略了局部衰减的频率依赖性,并假设了与介质的真实衰减无关的有限频率依赖性(即0.5 dB/cm-MHz)。由于局部衰减近似导致的散射体尺寸估计误差随着窗口长度增加、真实局部衰减增加以及f数增加而增大。当局部衰减由一个与组织无关的衰减值近似时,得到了最稳健的估计值,该衰减值大于感兴趣组织区域中预期最大衰减的70%。

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