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Numerical study of water diffusion in biological tissues using an improved finite difference method

机译:改进的有限差分法对生物组织中水扩散的数值研究

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摘要

An improved finite difference (FD) method has been developed in order to calculate the behaviour of the nuclear magnetic resonance signal variations caused by water diffusion in biological tissues more accurately and efficiently. The algorithm converts the conventional image-based finite difference method into a convenient matrix-based approach and includes a revised periodic boundary condition which eliminates the edge effects caused by artificial boundaries in conventional FD methods. Simulated results for some modelled tissues are consistent with analytical solutions for commonly used diffusion-weighted pulse sequences, whereas the improved FD method shows improved efficiency and accuracy. A tightly coupled parallel computing approach was also developed to implement the FD methods to enable large-scale simulations of realistic biological tissues. The potential applications of the improved FD method for understanding diffusion in tissues are also discussed.
机译:为了更准确和有效地计算由水在生物组织中扩散引起的核磁共振信号变化的行为,已经开发了一种改进的有限差分(FD)方法。该算法将常规的基于图像的有限差分方法转换为方便的基于矩阵的方法,并包括修正的周期性边界条件,该条件消除了常规FD方法中由人工边界引起的边缘效应。某些模型化组织的模拟结果与常用扩散加权脉冲序列的解析解一致,而改进的FD方法显示出更高的效率和准确性。还开发了紧密耦合的并行计算方法来实施FD方法,以实现对真实生物组织的大规模仿真。还讨论了改进的FD方法在理解组织扩散方面的潜在应用。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(52),7
  • 年度 -1
  • 页码 N111–N126
  • 总页数 24
  • 原文格式 PDF
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