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大鼠前扣带回中局部兴奋性和抑制性突触连接的层特异性组织

Layer-Specific Organization of Local Excitatory and Inhibitory Synaptic Connectivity in the Rat Presubiculum.

作者信息

Peng Yangfan, Barreda Tomás Federico J, Klisch Constantin, Vida Imre, Geiger Jörg R P

机构信息

Institute of Neurophysiology, Charité - Universitätsmedizin, 10117 Berlin, Germany.

Institute for Integrative Neuroanatomy, Charité - Universitätsmedizin, 10117 Berlin, Germany.

出版信息

Cereb Cortex. 2017 Apr 1;27(4):2435-2452. doi: 10.1093/cercor/bhx049.

Abstract

The presubiculum is part of the parahippocampal spatial navigation system and contains head direction and grid cells upstream of the medial entorhinal cortex. This position within the parahippocampal cortex renders the presubiculum uniquely suited for analyzing the circuit requirements underlying the emergence of spatially tuned neuronal activity. To identify the local circuit properties, we analyzed the topology of synaptic connections between pyramidal cells and interneurons in all layers of the presubiculum by testing 4250 potential synaptic connections using multiple whole-cell recordings of up to 8 cells simultaneously. Network topology showed layer-specific organization of microcircuits consistent with the prevailing distinction of superficial and deep layers. While connections among pyramidal cells were almost absent in superficial layers, deep layers exhibited an excitatory connectivity of 3.9%. In contrast, synaptic connectivity for inhibition was higher in superficial layers though markedly lower than in other cortical areas. Finally, synaptic amplitudes of both excitatory and inhibitory connections showed log-normal distributions suggesting a nonrandom functional connectivity. In summary, our study provides new insights into the microcircuit organization of the presubiculum by revealing area- and layer-specific connectivity rules and sets new constraints for future models of the parahippocampal navigation system.

摘要

前下托是海马旁空间导航系统的一部分,在内嗅皮质内侧的上游包含头部方向细胞和网格细胞。前下托在海马旁皮质中的这一位置使其特别适合分析空间调谐神经元活动出现背后的回路需求。为了确定局部回路特性,我们通过对多达8个细胞同时进行多次全细胞记录,测试了4250个潜在的突触连接,分析了前下托各层锥体细胞和中间神经元之间突触连接的拓扑结构。网络拓扑显示微回路具有层特异性组织,与浅表层和深层的主要区别一致。虽然在浅表层锥体细胞之间几乎没有连接,但深层表现出3.9%的兴奋性连接。相比之下,浅表层抑制性突触连接较高,尽管明显低于其他皮质区域。最后,兴奋性和抑制性连接的突触幅度均呈对数正态分布,表明存在非随机的功能连接。总之,我们的研究通过揭示区域和层特异性连接规则,为前下托的微回路组织提供了新见解,并为海马旁导航系统的未来模型设定了新的限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84e5/5390487/52ef5f6effd9/bhx049f01.jpg

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