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不同类型皮质投射神经元间连接输入处理的变异性。

Variations in Commissural Input Processing Across Different Types of Cortical Projection Neurons.

机构信息

Center for Synaptic Brain Dysfunctions, Institute for Basic Science, Daejeon 34141, Korea.

Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon 34141, Korea.

出版信息

Cereb Cortex. 2022 Jun 7;32(12):2508-2520. doi: 10.1093/cercor/bhab361.

Abstract

To understand how incoming cortical inputs are processed by different types of cortical projection neurons in the medial prefrontal cortex, we compared intrinsic physiological properties of and commissural excitatory/inhibitory influences on layer 5 intratelencephalic (IT), layer 5 pyramidal tract (PT), and layers 2/3 IT projection neurons. We found that intrinsic physiological properties and commissural synaptic transmission varied across the three types of projection neurons. The rank order of intrinsic excitability was layer 5 PT > layer 5 IT > layers 2/3 IT neurons. Commissural connectivity was higher in layers 2/3 than layer 5 projection neurons, but commissural excitatory influence was stronger on layer 5 than layers 2/3 pyramidal neurons. Paired-pulse ratio was also greater in PT than IT neurons. These results indicate that commissural inputs activate deep layer PT neurons most preferentially and superficial layer IT neurons least preferentially. Deep layer PT neurons might faithfully transmit cortical input signals to downstream subcortical structures for reliable control of behavior, whereas superficial layer IT neurons might integrate cortical input signals from diverse sources in support of higher-order cognitive functions.

摘要

为了理解传入的皮质输入如何被内侧前额叶皮质中的不同类型的皮质投射神经元处理,我们比较了层内(IT)的 5 层、锥体束(PT)的 5 层和 2/3 层 IT 投射神经元的内在生理特性和交叉兴奋性/抑制性影响。我们发现,内在生理特性和交叉突触传递在三种投射神经元之间存在差异。内在兴奋性的顺序为 5 层 PT > 5 层 IT > 2/3 层 IT 神经元。2/3 层的交叉连接性高于 5 层投射神经元,但 5 层的交叉兴奋性影响强于 2/3 层的锥体神经元。PT 神经元的成对脉冲比也大于 IT 神经元。这些结果表明,交叉输入最优先激活深层 PT 神经元,而最不优先激活浅层 IT 神经元。深层 PT 神经元可能会将皮质输入信号忠实地传递到下游皮质下结构,以实现对行为的可靠控制,而浅层 IT 神经元可能会整合来自不同来源的皮质输入信号,以支持更高阶的认知功能。

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