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Comparison of temporal and spectral scattering methods using acoustically large breast models derived from magnetic resonance images

机译:使用从磁共振图像得出的声学上较大的乳房模型比较时间和频谱散射方法

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摘要

Accurate and efficient modeling of ultrasound propagation through realistic tissue models is important to many aspects of clinical ultrasound imaging. Simplified problems with known solutions are often used to study and validate numerical methods. Greater confidence in a timedomain k-space method and a frequency-domain fast multipole method is established in this paper by analyzing results for realistic models of the human breast. Models of breast tissue were produced by segmenting magnetic resonance images of ex vivo specimens into seven distinct tissue types. After confirming with histologic analysis by pathologists that the model structures mimicked in vivo breast, the tissue types were mapped to variations in sound speed and acoustic absorption. Calculations of acoustic scattering by the resulting model were performed on massively parallel supercomputer clusters using parallel implementations of the k-space method and the fast multipole method. The efficient use of these resources was confirmed by parallel efficiency and scalability studies using large-scale, realistic tissue models. Comparisons between the temporal and spectral results were performed in representative planes by Fourier transforming the temporal results. An RMS field error less than 3% throughout the model volume confirms the accuracy of the methods for modeling ultrasound propagation through human breast.
机译:通过现实的组织模型对超声传播进行准确而有效的建模对于临床超声成像的许多方面都很重要。已知解决方案的简化问题通常用于研究和验证数值方法。通过分析人类乳房现实模型的结果,本文建立了对时域k空间方法和频域快速多极方法的更大信心。通过将离体标本的磁共振图像分割为七种不同的组织类型来生成乳房组织模型。经过病理学家的组织学分析证实,该模型结构模仿了体内乳腺,然后将组织类型映射到声速和吸声的变化。使用k空间方法和快速多极子方法的并行实现,在大规模并行超级计算机集群上执行了所得模型的声散射计算。使用大规模,现实的组织模型进行的并行效率和可伸缩性研究证实了对这些资源的有效利用。时间和频谱结果之间的比较是通过傅立叶变换时间结果在代表性平面中进行的。整个模型体积中的RMS场误差小于3%,这证实了模拟超声波在人乳房中传播的方法的准确性。

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