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Dyslexia Diagnostics by 3-D Shape Analysis of the Corpus Callosum

机译:通过3-体的3-D形状分析进行阅读障碍诊断

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摘要

Dyslexia severely impairs learning abilities; therefore, improved diagnostic methods are needed. Neuropathological studies have revealed an abnormal anatomy of the corpus callosum (CC) in dyslexic brains. We propose a new approach for the quantitative analysis of 3-D magnetic resonance images (MRI) of the brain that ensures a more accurate quantification of anatomical differences between the CC of dyslexic and control subjects. The proposed approach consists of three main processing steps: 1) segmenting the CC from a given 3-D MRI using the learned CC shape and visual appearance; 2) extracting the centerline of the CC; and 3) cylindrical mapping of the CC surface for its comparative analysis. Validation on 3-D simulated phantoms demonstrates the ability of the proposed approach to accurately detect the shape variability between two 3-D surfaces. Experimental results revealed significant differences (at the 95% confidence level) between 14 normal and 16 dyslexic subjects in all four anatomical divisions, i.e., splenium, rostrum, genu, and body of their CCs. Moreover, the initial classification results based on the centerline length and CC thickness suggest that the proposed shape analysis is a promising supplement to the current techniques for diagnosing dyslexia.
机译:阅读障碍严重损害学习能力;因此,需要改进的诊断方法。神经病理学研究已发现阅读困难的大脑call体(CC)的解剖结构异常。我们提出了一种用于定量分析大脑的3D磁共振图像(MRI)的新方法,该方法可确保对阅读障碍者和对照组的CC之间的解剖差异进行更准确的量化。所提出的方法包括三个主要处理步骤:1)使用学习到的CC形状和视觉外观从给定的3-D MRI分割CC。 2)提取CC的中心线; 3)CC曲面的圆柱映射以进行比较分析。在3-D模拟体模上的验证证明了所提出方法能够准确检测两个3-D表面之间的形状变化的能力。实验结果表明,在所有四个解剖部位(即脾脏,讲台,膝骨和CC的身体)中,有14位正常人和16位阅读障碍者之间存在显着差异(在95%置信水平上)。此外,基于中心线长度和CC厚度的初步分类结果表明,所提出的形状分析是对目前诊断阅读困难的技术的有希望的补充。

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