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首页> 外文期刊>Biochimica et biophysica acta. Molecular basis of disease: BBA >Age-related white matter microstructural differences partly mediate age-related decline in processing speed but not cognition
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Age-related white matter microstructural differences partly mediate age-related decline in processing speed but not cognition

机译:与年龄相关的白质微结构差异部分地介导了与年龄相关的加工速度下降,但不影响认知

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摘要

Aging is associated with declining cognitive performance as well as structural changes in brain gray and white matter (WM). The WM deterioration contributes to a disconnection among distributed brain networks and may thus mediate age-related cognitive decline. The present diffusion tensor imaging (DTI) study investigated age-related differences in WM microstructure and their relation to cognition (episodic memory, visuospatial processing, fluency, and speed) in a large group of healthy subjects (n. = 287) covering 6 decades of the human life span. Age related decreases in fractional anisotropy (FA) and increases in mean diffusivity (MD) were observed across the entire WM skeleton as well as in specific WM tracts, supporting the WM degeneration hypothesis. The anterior section of the corpus callosum was more susceptible to aging compared to the posterior section, lending support to the anterior-posterior gradient of WM integrity in the corpus callosum. Finally, and of critical interest, WM integrity differences were found to mediate age-related reductions in processing speed but no significant mediation was found for episodic memory, visuospatial ability, or fluency. These findings suggest that compromised WM integrity is not a major contributing factor to declining cognitive performance in normal aging. This article is part of a Special Issue entitled: Imaging Brain Aging and Neurodegenerative disease.
机译:衰老与认知能力下降以及脑灰白质(WM)的结构变化有关。 WM恶化导致分布式脑网络之间的断开,因此可能介导与年龄有关的认知能力下降。目前的扩散张量成像(DTI)研究调查了一大批健康受试者(n = 287)的WM显微结构及其与认知的关系(年龄记忆,视觉空间处理,流畅性和速度),年龄长达6年,差异达6年之久。寿命在整个WM骨骼以及特定WM区域观察到与年龄相关的分数各向异性(FA)减小和平均扩散率(MD)增大,这支持WM变性假说。与后部相比,call体的前部更容易老化,这为call体中WM完整性的前后梯度提供了支持。最后,至关重要的一点是,发现WM完整性差异可介导与年龄相关的处理速度降低,但未发现情景记忆,视觉空间能力或流利性的显着中介。这些发现表明,受损的WM完整性不是正常衰老过程中认知能力下降的主要因素。本文是名为“成像大脑衰老和神经退行性疾病”的特刊的一部分。

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