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Consistent 4D Cortical Thickness Measurement for Longitudinal Neuroimaging Study

机译:一致的4D皮质厚度测量,用于纵向神经影像学研究

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Accurate and reliable method for measuring the thickness of human cerebral cortex provides powerful tool for diagnosing and studying of a variety of neuro-degenerative and psychiatric disorders, In these studies, capturing the subtle longitudinal changes of cortical thickness during pathological or physiological development is of great importance. For this purpose, in this paper, we propose a 4D cortical thickness measuring method. Different from the existing temporal-independent methods, our method fully utilizes the 4D information given by temporal serial images. Therefore, it is much more resistant to noises from the imaging and pre-processing steps. The experiments on longitudinal image datasets from the Alzheimer's Disease Neuroimaging Initiative (ADNI) show that our method significantly improves the longitudinal stability, i.e. temporal consistency, in cortical thickness measurement, which is crucial for longitudinal study. Power analysis of the correlation between cortical thickness and Mini-Mental-Status-Examination (MMSE) score demonstrated that our method generates statistically more significant results when comparing with the 3D temporal-independent thickness measuring methods.
机译:测量人脑皮质厚度的准确可靠方法提供了诊断和研究各种神经退行性和精神病疾病的强大工具,在这些研究中捕获病理或生理发育过程中皮质厚度的微妙纵向变化很大重要性。为此目的,在本文中,我们提出了一种4D皮质厚度测量方法。与现有的时间无关方法不同,我们的方法充分利用了时间串行图像给出的4D信息。因此,来自成像和预处理步骤的噪声更耐噪声。来自阿尔茨海默病神经影像序列(ADNI)的纵向图像数据集的实验表明,我们的方法显着提高了纵向稳定性,即延时稳定性,在皮质厚度测量中,这对于纵向研究至关重要。皮质厚度和小型心理状态检查(MMSE)评分之间的相关性的功率分析证明,当与3D颞型厚度测量方法相比,我们的方法在比较时产生统计学上的显着结果。

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