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丰富的环境和体育活动会刺激海马体的神经发生,但不会刺激嗅球的神经发生。

Enriched environment and physical activity stimulate hippocampal but not olfactory bulb neurogenesis.

作者信息

Brown Jason, Cooper-Kuhn Christiana M, Kempermann Gerd, Van Praag Henriette, Winkler Jürgen, Gage Fred H, Kuhn H Georg

机构信息

Department of Neurology, University of Regensburg, 93053 Regensburg, Germany.

出版信息

Eur J Neurosci. 2003 May;17(10):2042-6. doi: 10.1046/j.1460-9568.2003.02647.x.

Abstract

Exposure to an enriched environment and physical activity, such as voluntary running, increases neurogenesis of granule cells in the dentate gyrus of adult mice. These stimuli are also known to improve performance in hippocampus-dependent learning tasks, but it is unclear whether their effects on neurogenesis are exclusive to the hippocampal formation. In this study, we housed adult mice under three conditions (enriched environment, voluntary wheel running and standard housing), and analysed proliferation in the lateral ventricle wall and granule cell neurogenesis in the olfactory bulb in comparison to the dentate gyrus. Using bromodeoxyuridine to label dividing cells, we could not detect any difference in the number of newly generated cells in the ventricle wall. When giving the new cells time to migrate and differentiate in the olfactory bulb, we observed no changes in the number of adult-generated olfactory granule cells; however, voluntary running and enrichment produced a doubling in the amount of new hippocampal granule cells. The discrepancy between the olfactory bulb and the dentate gyrus suggests that these living conditions trigger locally through an as yet unidentified mechanism specific to neurogenic signals in the dentate gyrus.

摘要

暴露于丰富环境和进行体育活动,如自主跑步,可增加成年小鼠齿状回颗粒细胞的神经发生。这些刺激还已知能改善依赖海马体的学习任务中的表现,但尚不清楚它们对神经发生的影响是否仅限于海马结构。在本研究中,我们将成年小鼠饲养在三种条件下(丰富环境、自主转轮跑步和标准饲养),并与齿状回相比,分析侧脑室壁的增殖以及嗅球中的颗粒细胞神经发生。使用溴脱氧尿苷标记分裂细胞,我们未检测到脑室壁中新生成细胞数量的任何差异。当给新细胞时间在嗅球中迁移和分化时,我们未观察到成年生成的嗅颗粒细胞数量有变化;然而,自主跑步和丰富环境使新的海马颗粒细胞数量增加了一倍。嗅球和齿状回之间的差异表明,这些生活条件通过齿状回中尚未明确的特定神经源性信号机制在局部引发变化。

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