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Ground Truth for Diffusion MRI in Cancer: A Model-Based Investigation of a Novel Tissue-Mimetic Material

机译:扩散MRI在癌症中的地面真理:基于模型的新型组织模拟材料的研究。

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This work presents preliminary results on the development, characterisation, and use of a novel physical phantom designed as a simple mimic of tumour cellular structure, for diffusion-weighted magnetic resonance imaging (DW-MRI) applications. The phantom consists of a collection of roughly spherical, micron-sized core-shell polymer 'cells', providing a system whose ground truth microstructural properties can be determined and compared with those obtained from modelling the DW-MRI signal. A two-compartment analytic model combining restricted diffusion inside a sphere with hindered extracellular diffusion was initially investigated through Monte Carlo diffusion simulations, allowing a comparison between analytic and simulated signals. The model was then fitted to DW-MRI data acquired from the phantom over a range of gradient strengths and diffusion times, yielding estimates of 'cell' size, intracellular volume fraction and the free diffusion coefficient. An initial assessment of the accuracy and precision of these estimates is provided, using independent scanning electron microscope measurements and bootstrap-style simulations. Such phantoms may be useful for testing microstructural models relevant to the characterisation of tumour tissue.
机译:这项工作提出了一种新颖的物理模型的开发,表征和使用的初步结果,该模型被设计为肿瘤细胞结构的简单模拟物,适用于扩散加权磁共振成像(DW-MRI)应用。幻像由大约球形,微米大小的核-壳聚合物“单元”组成,提供了一个系统,该系统的基本真相微结构特性可以确定,并与通过DW-MRI信号建模获得的系统相比较。最初通过蒙特卡洛扩散模拟研究了一种两室分析模型,该模型将球体内的受限扩散与受阻的细胞外扩散结合在一起,从而可以对分析信号和模拟信号进行比较。然后将模型拟合到从幻像上通过一系列梯度强度和扩散时间获得的DW-MRI数据,得出“细胞”大小,细胞内体积分数和自由扩散系数的估计值。使用独立的扫描电子显微镜测量和自举式仿真,可以对这些估计的准确性和精确度进行初步评估。这样的体模可用于测试与肿瘤组织的表征有关的微结构模型。

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