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AxonPacking: An Open-Source Software to Simulate Arrangements of Axons in White Matter

机译:AxonPacking:一种模拟白色物质中轴突排列的开源软件

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摘要

HIGHLIGHTS
  • AxonPacking: Open-source software for simulating white matter microstructure.
  • Validation on a theoretical disk packing problem.
  • Reproducible and stable for various densities and diameter distributions.
  • Can be used to study interplay between myelin/fiber density and restricted fraction.
Quantitative Magnetic Resonance Imaging (MRI) can provide parameters that describe white matter microstructure, such as the fiber volume fraction (FVF), the myelin volume fraction (MVF) or the axon volume fraction (AVF) via the fraction of restricted water (fr). While already being used for clinical application, the complex interplay between these parameters requires thorough validation via simulations. These simulations required a realistic, controlled and adaptable model of the white matter axons with the surrounding myelin sheath. While there already exist useful algorithms to perform this task, none of them combine optimisation of axon packing, presence of myelin sheath and availability as free and open source software. Here, we introduce a novel disk packing algorithm that addresses these issues. The performance of the algorithm is tested in term of reproducibility over 50 runs, resulting density, and stability over iterations. This tool was then used to derive multiple values of FVF and to study the impact of this parameter on fr and MVF in light of the known microstructure based on histology sample. The standard deviation of the axon density over runs was lower than 10−3 and the expected hexagonal packing for monodisperse disks was obtained with a density close to the optimal density (obtained: 0.892, theoretical: 0.907). Using an FVF ranging within [0.58, 0.82] and a mean inter-axon gap ranging within [0.1, 1.1] μm, MVF ranged within [0.32, 0.44] and fr ranged within [0.39, 0.71], which is consistent with the histology. The proposed algorithm is implemented in the open-source software AxonPacking () and can be useful for validating diffusion models as well as for enabling researchers to study the interplay between microstructure parameters when evaluating qMRI methods.
机译:重点
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  • AxonPacking:用于模拟白质微观结构的开源软件。
  • 对理论磁盘填充问题的验证。
  • 在各种密度和直径下均可重现且稳定
  • 可用于研究髓磷脂/纤维密度与受限组分之间的相互作用。 定量磁共振成像(MRI)可以提供描述白质微观结构的参数,例如纤维体积分数(FVF),髓磷脂体积分数(MVF)或轴突体积分数(AVF)通过受限水分数(fr)得出。虽然已经用于临床,但这些参数之间的复杂相互作用需要通过模拟进行全面验证。这些模拟需要一个现实的,可控制的,适应性强的白质轴突及其周围髓鞘的模型。尽管已经存在执行此任务的有用算法,但它们都没有结合轴突填充的优化,髓鞘的存在以及作为免费和开源软件的可用性。在这里,我们介绍一种新颖的磁盘打包算法来解决这些问题。测试了算法的性能,测试了50次运行的可重复性,最终的密度以及迭代的稳定性。然后使用该工具得出FVF的多个值,并根据组织学样本根据已知的微观结构研究该参数对fr和MVF的影响。轴突密度在整个运行过程中的标准偏差低于10 -3 ,并且获得的单分散盘预期六角形堆积的密度接近最佳密度(获得:0.892,理论值:0.907)。使用FVF在[0.58,0.82]范围内和平均轴突间间隙在[0.1,1.1]μm范围内,MVF在[0.32,0.44]范围内,fr在[0.39,0.71]范围内,这与组织学一致。该算法在开源软件AxonPacking()中实现,可用于验证扩散模型以及使研究人员在评估qMRI方法时研究微观结构参数之间的相互作用。

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