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Momentum-based morphometric analysis with application to Parkinson's disease

机译:基于动量的形态计量学分析及其在帕金森氏病中的应用

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We apply the initial momentum shape representation of diffeomorphic metric mapping from a template region of interest (ROI) to a given ROI as a morphometic marker in Parkinson's disease. We used a three-step segmentation-registration-momentum process to derive feature vectors from ROIs in a group of 42 subjects consisting of 19 Parkinson's Disease (PD) subjects and 23 normal control (NC) subjects. Significant group differences between PD and NC subjects were detected in four basal ganglia structures including the caudate, putamen, thalamus and globus pallidus. The magnitude of regionally significant between-group differences detected ranged between 34-75%. Visualization of the different structural deformation pattern between-groups revealed that some parts of basal ganglia structure actually hypertrophy, presumably as a compensatory response to more widespread atrophy. Our results of both hypertrophy and atrophy in the same structures further demonstrate the importance of morphological measures as opposed to overall volume in the assessment of neurodegenerative disease.
机译:我们应用从目标模板区域(ROI)到给定ROI的微变形度量映射的初始动量形状表示,作为帕金森氏病的形态学标记。我们使用了三步分割-注册-动量过程从ROI中获取特征向量,这些ROI由42名受试者组成,包括19名帕金森氏病(PD)受试者和23名正常对照(NC)受试者。 PD和NC受试者之间的显着组差异在包括尾状,壳状核,丘脑和苍白球的四个基底神经节结构中检测到。检测到的区域间显着性组间差异的幅度在34%至75%之间。组间不同结构变形模式的可视化显示,基底神经节结构的某些部分实际上是肥大的,大概是对更广泛的萎缩的一种补偿性反应。我们在相同结构中肥大和萎缩的结果进一步证明了形态学测量的重要性,而不是总体积在神经退行性疾病评估中的重要性。

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