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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Specialized cortical subnetworks differentially connect frontal cortex to parahippocampal areas
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Specialized cortical subnetworks differentially connect frontal cortex to parahippocampal areas

机译:专门的皮质子网将额叶皮层与海马旁区域不同地连接

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How information is manipulated and segregated within local circuits in the frontal cortex remains mysterious, in part because of inadequate knowledge regarding the connectivity of diverse pyramidal cell subtypes. The frontal cortex participates in the formation and retrieval of declarative memories through projections to the perirhinal cortex, and in procedural learning through projections to the striatum/pontine nuclei. In rat frontal cortex, we identified two pyramidal cell subtypes selectively projecting to distinct subregions of perirhinal cortex (PRC). PRC-projecting cells in upper layer 2/3 (L2/3) of the frontal cortex projected to perirhinal area 35, while neurons in L5 innervated perirhinal area 36. L2/3 PRC-projecting cells partially overlapped with those projecting to the basolateral amygdala. L5 PRC-projecting cells partially overlapped with crossed corticostriatal cells, but were distinct from neighboring corticothalamic (CTh)/ corticopontine cells. L5 PRC-projecting and CTh cells were different in their electrophysiological properties and dendritic/axonal morphologies. Within the frontal cortex, L2/3 PRC-projecting cells innervated L5 PRC-projecting and CTh cells with similar probabilities, but received feedback excitation only from PRC-projecting cells. These data suggest that specific neuron subtypes in different cortical layers are reciprocally excited via interlaminar loops. Thus, two interacting output channels send information from the frontal cortex to different hierarchical stages of the parahippocampal network, areas 35 and 36, with additional collaterals selectively targeting the amygdala or basal ganglia, respectively. Combined with the hierarchical connectivity of PRC-projecting and CTh cells, these observations demonstrate an exquisite diversification of frontal projection neurons selectively connected according to their participation in distinct memory subsystems.
机译:信息如何在额叶皮层的局部回路内被操纵和隔离仍然是个谜,部分原因是由于对各种锥体细胞亚型的连通性了解不足。额叶皮层通过投射到周围神经皮层参与声明性记忆的形成和恢复,并通过投射到纹状体/桥脑核参与过程学习。在大鼠额叶皮层中,我们确定了两个锥体细胞亚型,选择性地投射到周围皮层(PRC)的不同子区域。额叶皮质上层2/3(L2 / 3)中的PRC投射细胞投射到周围神经区域35,而L5中的神经元支配着周围神经区域36。L2/ 3 PRC投射细胞与投射到基底外侧杏仁核的细胞部分重叠。 。 L5 PRC投射细胞与交叉的皮质口角细胞部分重叠,但与相邻的皮质丘脑(CTh)/皮质酮细胞不同。 L5 PRC投影细胞和CTh细胞在电生理特性和树突/轴突形态方面不同。在额叶皮层中,L2 / 3 PRC投射细胞以相似的概率支配L5 PRC投射细胞和CTh细胞,但是仅从PRC投射细胞获得反馈激发。这些数据表明,不同的皮质层中特定的神经元亚型是通过层间环相互激发的。因此,两个相互作用的输出通道将信息从额叶皮层发送到海马旁网络的不同层次阶段(区域35和36),另外的侧支分别选择性地针对杏仁核或基底神经节。结合PRC投射和CTh细胞的层次连通性,这些观察结果表明,根据额叶投射神经元参与不同的内存子系统而选择性连接的额叶投射神经元的精致多样化。

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