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Network functional connectivity and whole-brain functional connectomics to investigate cognitive decline in neurodegenerative conditions

机译:网络功能连通性和全脑功能连通性研究神经退行性疾病的认知能力下降

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摘要

Non-invasive mapping of brain functional connectivity (FC) has played a fundamental role in neuroscience, and numerous scientists have been fascinated by its ability to reveal the brain’s intricate morphology and functional properties. In recent years, two different techniques have been developed that are able to explore FC in pathophysiological conditions and to provide simple and non-invasive biomarkers for the detection of disease onset, severity and progression. These techniques are independent component analysis, which allows a network-based functional exploration of the brain, and graph theory, which provides a quantitative characterization of the whole-brain FC. In this paper we provide an overview of these two techniques and some examples of their clinical applications in the most common neurodegenerative disorders associated with cognitive decline, including mild cognitive impairment, Alzheimer’s disease, Parkinson’s disease, dementia with Lewy Bodies and behavioral variant frontotemporal dementia.
机译:大脑功能连接(FC)的非侵入性映射在神经科学中发挥了基础性作用,无数科学家对它揭示大脑复杂的形态和功能特性的能力着迷。近年来,已经开发出两种不同的技术,它们能够在病理生理条件下探索FC,并提供简单且非侵入性的生物标记物来检测疾病的发作,严重程度和进展。这些技术是独立的成分分析(可以进行基于网络的大脑功能探索)和图形理论(可以对全脑FC进行定量表征)。在本文中,我们提供了这两种技术的概述,以及它们在与认知功能下降相关的最常见神经退行性疾病中的临床应用实例,包括轻度认知障碍,阿尔茨海默氏病,帕金森氏病,路易体痴呆和行为变异性额颞痴呆。

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