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Inhibitory microcircuit modules in hippocampal learning

机译:海马学习中的抑制性微电路模块

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摘要

It has recently become possible to investigate connectivities and roles of identified hippocampal GABAergic interneurons (iNs) in behaving rodents. INs targeting distinct pyramidal neuron subcompartments are recruited dynamically at defined phases of behavior and learning. They include Parvalbumin Axo-axonic and perisomatic Basket cells, and Somatostatin radiatum-oriens and oriens-lacunosum moleculare cells. Each IN is in turn either activated or inhibited upon specific behavioral and network state requirements through specific inputs and neuromodulators. Subpopulations of these principal neurons and INs interconnect selectively, suggesting selective processing and routing of alternate information streams. First canonical functional modules have emerged, which will have to be further defined and linked to identified afferents and efferents towards a circuit understanding of how hippocampal networks support behavior.
机译:最近,研究啮齿动物行为中已鉴定出的海马GABA能性中间神经元(iNs)的连通性和作用成为可能。在行为和学习的定义阶段动态招募针对不同锥体神经元小室的IN。它们包括小白蛋白轴突和轴突篮子细胞,以及生长抑素辐射原和or-腔菌分子细胞。通过特定的输入和神经调节器,可以根据特定的行为和网络状态要求依次激活或禁止每个IN。这些主要神经元和IN的亚群选择性互连,表明选择性信息流的选择性处理和路由。首先出现了规范的功能模块,必须对其进行进一步定义,并将其与已识别的传入和传出联系起来,以了解海马网络如何支持行为。

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