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A three-dimensional fractal analysis method for quantifying white matter structure in human brain.

机译:一种用于量化人脑白质结构的三维分形分析方法。

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摘要

Fractal dimension (FD) is increasingly used to quantify complexity of brain structures. Previous research that analyzed FD of human brain mainly focused on two-dimensional measurements. In this study, we developed a three-dimensional (3D) box-counting method to measure FD of human brain white matter (WM) interior structure, WM surface and WM general structure simultaneously. This method, which firstly incorporates a shape descriptor (3D skeleton) representing interior structure and combines the three features, provides a more comprehensive characterization of WM structure. WM FD of different brain segments was computed to test robustness of the method. FDs of fractal phantoms were computed to test the accuracy of the method. The consistency of the computed and theoretical FD values suggests that our method is accurate in measuring FDs of fractals. Statistical analysis was performed to examine sensitivity of the method in detecting WM structure differences in a number of young and old subjects. FD values of the WM skeleton and surface were significantly greater in young than old individuals, indicating more complex WM structures in young people. These results suggest that our method is accurate in quantifying three-dimensional brain WM structures and sensitive in detecting age-related degeneration of the structures.
机译:分形维数(FD)越来越多地用于量化大脑结构的复杂性。先前分析人脑FD的研究主要集中在二维测量上。在这项研究中,我们开发了一种三维(3D)盒计数方法来同时测量人脑白质(WM)内部结构,WM表面和WM总体结构的FD。该方法首先合并了代表内部结构的形状描述符(3D骨架)并结合了三个特征,从而提供了对WM结构的更全面的表征。计算不同脑段的WM FD以测试该方法的鲁棒性。计算分形体模的FD,以测试该方法的准确性。计算得出的FD值与理论FD值的一致性表明,我们的方法可以准确地测量分形的FD。进行统计分析以检查该方法在许多年轻和老年受试者中检测WM结构差异的敏感性。年轻人的WM骨骼和表面的FD值明显大于老年人,这表明年轻人的WM结构更为复杂。这些结果表明,我们的方法在定量三维脑WM结构方面是准确的,并且在检测与年龄相关的结构变性方面也很敏感。

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