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首页> 外文期刊>The Journal of Chemical Physics >Joint radius-length distribution as a measure of anisotropic pore eccentricity: An experimental and analytical framework
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Joint radius-length distribution as a measure of anisotropic pore eccentricity: An experimental and analytical framework

机译:关节半径-长度分布作为各向异性孔偏心率的量度:实验和分析框架

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In this work, we present an experimental design and analytical framework to measure the non-parametric joint radius-length (R-L) distribution of an ensemble of parallel, finite cylindrical pores, and more generally, the eccentricity distribution of anisotropic pores. Employing a novel 3D double pulsed-field gradient acquisition scheme, we first obtain both the marginal radius and length distributions of a population of cylindrical pores and then use these to constrain and stabilize the estimate of the joint radius-length distribution. Using the marginal distributions as constraints allows the joint R-L distribution to be reconstructed from an underdetermined system (i.e., more variables than equations), which requires a relatively small and feasible number of MR acquisitions. Three simulated representative joint R-L distribution phantoms corrupted by different noise levels were reconstructed to demonstrate the process, using this new framework. As expected, the broader the peaks in the joint distribution, the less stable and more sensitive to noise the estimation of the marginal distributions. Nevertheless, the reconstruction of the joint distribution is remarkably robust to increases in noise level; we attribute this characteristic to the use of the marginal distributions as constraints. Axons are known to exhibit local compartment eccentricity variations upon injury; the extent of the variations depends on the severity of the injury. Nonparametric estimation of the eccentricity distribution of injured axonal tissue is of particular interest since generally one cannot assume a parametric distribution a priori. Reconstructing the eccentricity distribution may provide vital information about changes resulting from injury or that occurred during development.
机译:在这项工作中,我们提出了一个实验设计和分析框架,以测量平行,有限的圆柱孔整体的非参数关节半径-长度(R-L)分布,更一般地,测量各向异性孔的偏心距分布。采用一种新颖的3D双脉冲场梯度采集方案,我们首先获得一组圆柱孔的边际半径和长度分布,然后使用它们来约束和稳定关节半径-长度分布的估计。使用边际分布作为约束允许从不确定系统(即,比方程式更多的变量)重构联合R-L分布,这需要相对较小且可行的MR采集次数。使用这个新框架,重建了三个模拟代表关节R-L分布模型,它们被不同的噪声水平破坏了,以演示该过程。不出所料,联合分布中的峰越宽,边缘分布的估计就越不稳定,对噪声越敏感。然而,联合分布的重建对于提高噪声水平非常有力。我们将此特征归因于使用边际分布作为约束。已知轴突在受伤时会表现出局部的隔室偏心率变化。变化的程度取决于伤害的严重程度。受伤的轴突组织的偏心距分布的非参数估计尤为重要,因为通常不能先验地假定参数分布。重建偏心率分布可能会提供有关伤害或开发过程中发生的变化的重要信息。

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