Department of Neuroscience, Karolinska Institutet, Stockholm, Sweden.
Department of Biosciences and Nutrition, Karolinska Institutet, Huddinge, Sweden.
Nat Neurosci. 2019 Apr;22(4):657-668. doi: 10.1038/s41593-019-0354-y. Epub 2019 Mar 18.
The local and long-range connectivity of cortical neurons are considered instrumental to the functional repertoire of the cortical region in which they reside. In cortical networks, distinct cell types build local circuit structures enabling computational operations. Computations in the medial prefrontal cortex (mPFC) are thought to be central to cognitive operation, including decision-making and memory. We used a retrograde trans-synaptic rabies virus system to generate brain-wide maps of the input to excitatory neurons as well as three inhibitory interneuron subtypes in the mPFC. On the global scale the input patterns were found to be mainly cell type independent, with quantitative differences in key brain regions, including the basal forebrain. Mapping of the local mPFC network revealed high connectivity between the different subtypes of interneurons. The connectivity mapping gives insight into the information that the mPFC processes and the structural architecture underlying the mPFC's unique functions.
皮质神经元的局部和远程连接被认为是其所在皮质区域功能的重要组成部分。在皮质网络中,不同的细胞类型构建局部回路结构,从而实现计算操作。内侧前额叶皮质 (mPFC) 的计算被认为是认知操作的核心,包括决策和记忆。我们使用逆行跨突触狂犬病毒系统,生成了 mPFC 中兴奋性神经元以及三种抑制性中间神经元亚型的全脑输入图谱。在全局尺度上,输入模式主要与细胞类型无关,而在包括基底前脑在内的关键脑区存在定量差异。对局部 mPFC 网络的映射显示不同中间神经元亚型之间具有高度的连接性。连接性映射为 mPFC 处理的信息以及 mPFC 独特功能的结构架构提供了深入的了解。