Unit on Neuroplasticity, National Institute of Mental Health, National Institutes of Health, Bethesda, MD 20892, USA.
Neurobiol Aging. 2011 Jun;32(6):1149-56. doi: 10.1016/j.neurobiolaging.2009.05.022. Epub 2009 Jul 25.
Recent studies suggest that hippocampal function is partially dissociable along its septo-temporal axis: the septal hippocampus is more critical for spatial processing, while the temporal hippocampus may be more important for non-spatial-related behavior. In young adults, water maze training specifically activates new neurons in the temporal hippocampus, but it is unknown whether subregional differences are maintained in older animals, which have reduced neurogenesis levels. We therefore examined gradients of activity-related Fos expression and neurogenesis in 13-month-old rats and found that neurogenesis occurs relatively evenly throughout the dentate gyrus. Water maze experience significantly increased Fos expression in the suprapyramidal blade and Fos was highest in the septal pole of the dentate gyrus whether the animal learned a platform location, swam in the absence of a platform or remained in their cage. No Fos+ young neurons were found using typical markers of immature neurons. However, Fos expression in the subgranular zone, where adult-born neurons predominate, was disproportionally high in the temporal dentate gyrus. These findings indicate that adult-born neurons in the temporal hippocampus are preferentially activated compared with older neurons.
最近的研究表明,海马体的功能沿着其隔颞轴部分可分离:隔海马体对于空间处理更为关键,而颞海马体可能对非空间相关行为更为重要。在年轻人中,水迷宫训练专门激活颞海马体中的新神经元,但尚不清楚在具有较低神经发生水平的老年动物中是否保持亚区差异。因此,我们在 13 个月大的大鼠中检查了与活动相关的 Fos 表达和神经发生的梯度,发现神经发生在整个齿状回中相对均匀地发生。水迷宫体验显著增加了上棘突刀片中的 Fos 表达,并且无论动物学习平台位置、在没有平台的情况下游泳还是留在笼子里,Fos 在齿状回的隔极中最高。使用不成熟神经元的典型标志物未发现 Fos+年轻神经元。然而,在成年新生神经元占主导地位的颗粒下区,Fos 表达不成比例地高。这些发现表明,与老年神经元相比,颞海马体中的成年新生神经元被优先激活。