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衰老与人类前庭神经核

Aging and the human vestibular nucleus.

作者信息

Lopez I, Honrubia V, Baloh R W

机构信息

UCLA School of Medicine, Division of Head and Neck Surgery 90024-1769, USA.

出版信息

J Vestib Res. 1997 Jan-Feb;7(1):77-85.

PMID:9057161
Abstract

Degenerative changes during aging have been identified in the inner ear and in the vestibular nerve, but not in the human vestibular nuclear complex (VNC). Therefore, the purpose of this study was to document quantitative morphometric changes within the VNC in humans as a function of age. The VNC of normal human subjects was examined for age-related changes using computer-based microscopy. Neuronal counts, nuclear volume, neuronal density, and nuclear length of the 4 vestibular nuclei were determined in 15 normal people, age 40 to 93 years. Based on a linear model, there was approximately a 3% neuronal loss per decade from age forty to ninety. VNC volume and neuronal density also decreased significantly with age, although to a lesser degree than did the number of neurons. Neuronal loss as a percentage of the total number of neurons was greatest in the superior vestibular nucleus and least in the medial vestibular nucleus. Despite the overall loss of neurons, the number of giant neurons (> 500 microns2) increased in older people. This increase in giant neurons could be traced to the accumulation of lipofuscin deposits in the cell somata. The overall rate of neuronal loss with aging in the VNC is comparable to that previously observed in hair cells, primary vestibular neurons, and cerebellar Purkinje cells, but is in contrast to prior reports of no age-related loss of neurons in other brain stem nuclei.

摘要

衰老过程中的退行性变化已在内耳和前庭神经中被发现,但在人类前庭神经核复合体(VNC)中尚未发现。因此,本研究的目的是记录人类VNC内随年龄变化的定量形态学改变。使用基于计算机的显微镜检查正常人类受试者的VNC,以观察与年龄相关的变化。在15名年龄在40至93岁的正常人中,测定了4个前庭核的神经元计数、核体积、神经元密度和核长度。基于线性模型,从40岁到90岁,每十年神经元损失约3%。VNC体积和神经元密度也随年龄显著下降,尽管下降程度小于神经元数量。神经元损失占神经元总数的百分比在前庭上核中最大,在前庭内侧核中最小。尽管神经元总体减少,但老年人中巨型神经元(>500平方微米)的数量增加。巨型神经元数量的增加可追溯到细胞体中脂褐素沉积物的积累。VNC中神经元随年龄的总体损失率与先前在毛细胞、初级前庭神经元和小脑浦肯野细胞中观察到的相似,但与先前关于其他脑干核中无年龄相关神经元损失的报道形成对比。

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