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扣带回束和胼胝体有髓神经纤维的年龄变化猕猴。

Age changes in myelinated nerve fibers of the cingulate bundle and corpus callosum in the rhesus monkey.

机构信息

Department of Anatomy and Neurobiology, Boston University School of Medicine, Boston, Massachusetts 02118, USA.

出版信息

J Comp Neurol. 2010 Aug 1;518(15):3046-64. doi: 10.1002/cne.22379.

Abstract

Aging is accompanied by deficits in cognitive function, which may be related to the vulnerability of myelinated nerve fibers to the normal process of aging. Loss of nerve fibers, together with age-related alterations in myelin sheath structure, may result in the inefficient and poorly coordinated conduction of neuronal signals. Until now, the ultrastructural analysis of cerebral white matter fiber tracts associated with frontal lobe areas critical in cognitive processing has been limited. In this study we analyzed the morphology and area number density of myelinated nerve fibers in the cingulate bundle and genu of the corpus callosum in behaviorally assessed young, middle aged, and old rhesus monkeys (Macaca mulatta). In both structures, normal aging results in a 20% decrease in the number of myelinated nerve fibers per unit area, while remaining nerve fibers exhibit an increasing frequency of degenerative changes in their myelin sheaths throughout middle and old age. Concomitantly, myelination continues in older monkeys, suggesting ongoing, albeit inadequate, reparative processes. Despite similar patterns of degeneration in both fiber tracts, only the age-related changes in the cingulate bundle correlate with declining cognitive function, underscoring its role as a critical corticocortical pathway linking the medial prefrontal, cingulate, and parahippocampal cortices in processes of working memory, recognition memory, and other higher cognitive faculties. These results further demonstrate the important role myelinated nerve fiber degeneration plays in the pathogenesis of age-related cognitive decline.

摘要

衰老是认知功能缺陷的伴随物,这可能与有髓神经纤维对正常衰老过程的脆弱性有关。神经纤维的丧失,加上髓鞘结构的年龄相关性改变,可能导致神经元信号的低效和不协调传导。到目前为止,与认知处理中关键的额叶区域相关的大脑白质纤维束的超微结构分析一直受到限制。在这项研究中,我们分析了行为评估的年轻、中年和老年恒河猴(Macaca mulatta)扣带束和胼胝体膝部有髓神经纤维的形态和面积数密度。在这两种结构中,正常衰老导致单位面积内有髓神经纤维数量减少 20%,而剩余的神经纤维在从中年到老年的过程中其髓鞘发生退行性变化的频率增加。同时,在老年猴子中髓鞘继续形成,表明尽管修复过程不足,但仍在进行中。尽管两个纤维束的退化模式相似,但只有扣带束的年龄相关性变化与认知功能下降相关,突出了其作为连接内侧前额叶、扣带和海马旁皮质的关键皮质皮质通路的作用,在工作记忆、识别记忆和其他高级认知功能中。这些结果进一步证明了有髓神经纤维退化在与年龄相关的认知能力下降的发病机制中起着重要作用。

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