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Structural and Functional Connectivity: A Combined Analysis of Patients with Multiple Sclerosis Using Joint-ICA

机译:结构和功能性连体:使用联合ICA的多发性硬化患者的组合分析

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The human brain can be compared to a “bundle of wires” composed by neurons that interconnect distinct gray matter regions. These “bundle of wires” are the principal composition of the white matter and has the fundamental function of conducting the synaptic signals to the gray matter. Functional magnetic resonance imaging (fMRI) corresponds to a neuroimage modality optimized to quantify neural activity that occurs in the gray matter, whereas the Diffusion Tensor Imaging (DTI) is another neuroimage modality optimized to quantify distinct white matter properties. Despite the resulting signal of these image modalities come from different tissues, they are signals that contain complementary information. In neurodegenerative diseases such as Multiple Sclerosis (MS), the myelin sheath of neurons are damaged, and can provoke a series of dysfunctions such as motor disability, problems with speech, visual problems, fatigue, among other complications. Knowing the existence of this intimate functional and structural correlation among white and gray matter, this study seeks to unify both, functional connectivity measures of fMRI and structural connectivity measures of DTI, using the statistical tool joint independent component analysis (J-ICA). Results show that the coupling of these different imaging modalities is modulated by scores derived from neuropsychological tests used to evaluate patient's cognitive impairment by MS.
机译:可以将人脑与由互连灰质地区互连的神经元组成的“束导线”进行比较。这些“线束”是白质的主要组成,具有将突触信号传导到灰质的根本功能。功能性磁共振成像(FMRI)对应于优化的神经显图像模态,以定量灰质的神经活性,而扩散张量成像(DTI)是针对量化不同的白物质特性的另一种神经镜像模型。尽管所得到的信号,这些图像模态来自不同的组织,但它们是包含互补信息的信号。在诸如多发性硬化症(MS)之类的神经变性疾病中,神经元的髓鞘被损坏,并且可以挑起一系列功能障碍,例如运动残疾,语音,视觉问题,疲劳,以及其他并发症等问题。了解白和灰质之间这种紧密功能性和结构相关性的存在,本研究旨在统一统计工具联合独立分量分析(J-ICA)的DTI的FMRI和结构连接测量的功能性连接措施。结果表明,这些不同的成像方式的偶联由来自MS的患者的认知障碍的神经心理学测试的分数调节。

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