Institute of Physiology, Christian-Albrechts-University Kiel, Kiel, Germany.
Clinic for Radiology and Neuroradiology, UKSH, Kiel, Germany.
Sci Rep. 2023 Oct 27;13(1):18443. doi: 10.1038/s41598-023-45304-y.
The hippocampal formation is one of the best studied brain regions for spatial and mnemonic representations. These representations have been reported to differ in their properties for individual hippocampal subregions. One approach that allows the detection of neuronal representations is immediate early gene imaging, which relies on the visualization of genomic responses of activated neuronal populations, so called engrams. This method permits the within-animal comparison of neuronal representations across different subregions. In this work, we have used compartmental analysis of temporal activity by fluorescence in-situ hybridisation (catFISH) of the immediate early gene zif268/erg1 to compare neuronal representations between subdivisions of the dentate gyrus and CA3 upon exploration of different contexts. Our findings give an account of subregion-specific ensemble sizes. We confirm previous results regarding disambiguation abilities in dentate gyrus and CA3 but in addition report novel findings: Although ensemble sizes in the lower blade of the dentate gyrus are significantly smaller than in the upper blade both blades are responsive to environmental change. Beyond this, we show significant differences in the representation of familiar and novel environments along the longitudinal axis of dorsal CA3 and most interestingly between CA3 regions of both hemispheres.
海马结构是研究空间和记忆表现的最佳脑区之一。这些表现被报道在个体海马亚区的特性上有所不同。一种可以检测神经元表现的方法是即时早期基因成像,它依赖于激活神经元群体的基因组反应的可视化,即所谓的记忆痕迹。这种方法允许在不同亚区之间进行动物内的神经元表现比较。在这项工作中,我们使用荧光原位杂交(catFISH)对即时早期基因 zif268/erg1 的时间活性进行分区分析,以比较在探索不同环境时齿状回和 CA3 的不同细分之间的神经元表现。我们的发现说明了亚区特有的集合大小。我们证实了齿状回和 CA3 中的去混淆能力的先前结果,但除此之外,我们还报告了新的发现:尽管下齿状回的集合大小明显小于上齿状回,但两个齿状回都对环境变化有反应。除此之外,我们沿着背侧 CA3 的纵轴显示了熟悉和新环境的表示的显著差异,最有趣的是在两个半球的 CA3 区域之间。