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Efficient Recruitment of Layer 2/3 Interneurons by Layer 4 Input in Single Columns of Rat Somatosensory Cortex

机译:大鼠体感皮层单列中第4层输入的第2/3层中间神经元的有效招募

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摘要

Interneurons in layers 2/3 are excited by pyramidal cells within the same layer (; ), but little is known about translaminar innervation of these interneurons by spiny neurons in the main cortical input layer 4 (L4). Here, we investigated (1) how efficiently L4 spiny neurons excite L2/3 interneurons via monosynaptic connections, (2) whether glutamate release from axon terminals of L4 spiny neurons depends on the identity of the postsynaptic interneuron, and (3) how L4-to-L2/3 interneuron connections compare with L4-to-L2/3 pyramidal neuron connections. We recorded from pairs of L4 spiny neurons and L2/3 interneurons in acute slices of rat barrel cortex of postnatal day 20 (P20) to P29 rats. The L4-to-L2/3 interneuron connections had an average unitary EPSP of 1.2 ± 1.1 mV. We found an average of 2.3 ± 0.8 contacts per connection, and the L4-to-L2/3 interneuron innervation domains were mostly column restricted. Unitary EPSP amplitudes and paired-pulse ratios in the L4-to-L2/3 interneuron connections depended on the “group” of the postsynaptic interneuron. Averaged over all L4-to-L2/3 interneuron connections, unitary EPSP amplitudes were 1.8-fold higher than in the translaminar L4-to-L2/3 pyramidal cell connections. Our results suggest that L4 spiny neurons may more efficiently recruit L2/3 interneurons than L2/3 pyramidal neurons, and that glutamate release from translaminar boutons of L4 spiny neuron axons is target cell specific.
机译:第2/3层中的中间神经元被同一层中的锥体细胞激发;但是,关于这些中间神经元通过主皮质输入层4(L4)中的多刺神经元进行跨层神经支配的知之甚少。在这里,我们研究了(1)L4刺神经元如何通过单突触连接有效激发L2 / 3中间神经元;(2)谷氨酸是否从L4刺神经元的轴突末端释放取决于突触后中间神经元的身份;以及(3)L4-到L2 / 3中间神经元连接与L4到L2 / 3锥体神经元连接相比。我们从出生后第20天(P20)到P29大鼠的大鼠桶状皮质急性切片中的L4棘突神经元和L2 / 3中间神经元对记录。 L4-to-L2 / 3中子连接的平均单位EPSP为1.2±1.1 mV。我们发现每个连接平均有2.3±0.8个接触,并且L4-to-L2 / 3神经元神经支配域大部分受列限制。 L4-L2 / L2 / 3中间神经元连接中的单一EPSP振幅和成对脉冲比率取决于突触后中间神经元的“组”。在所有L4-to-L2 / 3中间神经元连接上取平均值,单位EPSP振幅比跨层L4-to-L2 / 3锥体细胞连接高1.8倍。我们的结果表明,L4多刺神经元可能比L2 / 3锥体神经元更有效地募集L2 / 3中间神经元,而L4多刺神经元轴突的跨层状束谷氨酸释放是靶细胞特异性的。

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