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灵长类穹窿体如何受年龄影响。

How the primate fornix is affected by age.

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 Oct 1;518(19):3962-80. doi: 10.1002/cne.22434.

Abstract

The effects of age on nerve fibers and neuroglial cells in the fornix were examined in 25 rhesus monkeys between 4 and 33 years of age. There is no age-related change in the cross-sectional area of the fornix, but there is a significant loss of myelinated nerve fibers. The loss of myelinated nerve fibers is accompanied by a significant increase in the numbers of nerve fibers that show degeneration of their axons and alterations in myelin sheaths. Aging also brings about an increase in the frequency of profiles of paranodes, indicating that some of the nerve fibers are being remyelinated. Aging also affects neuroglial cells. Each type shows inclusions in their perikarya, and in the case of astrocytes and microglial cells some of these inclusions are phagocytosed myelin. Numbers of astrocytes and microglial cells do not appear to increase with age, but there is a 20% increase in oligodendrocytes. When correlations with cognitive impairments displayed by individual monkeys are examined, the decreased packing density of nerve fibers and the increasing frequency of nerve fibers with degenerating axons and of nerve fibers with altered myelin sheaths all correlate with increasing cognitive impairment. It is suggested that these correlations result from some disconnection of the hippocampus from the thalamus, septal nuclei, and medial frontal cortex and from reductions in the conduction velocity brought about by the shorter internodal lengths of remyelinated nerve fibers in the fornix.

摘要

研究人员检查了 25 只 4 至 33 岁恒河猴的穹窿内神经纤维和神经胶质细胞随年龄的变化。穹窿的横截面积没有与年龄相关的变化,但有大量的有髓神经纤维丢失。有髓神经纤维的丢失伴随着轴突变性和髓鞘改变的神经纤维数量的显著增加。衰老还导致了旁突轮廓频率的增加,表明有些神经纤维正在进行髓鞘再生。衰老也会影响神经胶质细胞。每种类型的神经胶质细胞在其胞体中都有内含物,在星形胶质细胞和小胶质细胞中,有些内含物是吞噬了的髓磷脂。星形胶质细胞和小胶质细胞的数量似乎不会随年龄增长而增加,但少突胶质细胞增加了 20%。当研究人员检查个别猴子的认知障碍与这些变化的相关性时,发现神经纤维的堆积密度降低,轴突变性和髓鞘改变的神经纤维的频率增加,与认知障碍的增加呈正相关。研究人员认为,这些相关性是由于穹窿内的海马体与丘脑、隔核和内侧前额叶皮质的某些连接中断,以及穹窿内髓鞘再生神经纤维的节间长度缩短导致的传导速度降低所致。

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