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视觉皮层第5层中的快速放电中间神经元:异质性反应特性与丘脑皮质连接性相关。

Fast-Spike Interneurons in Visual Cortical Layer 5: Heterogeneous Response Properties Are Related to Thalamocortical Connectivity.

作者信息

Su Chuyi, Mendes-Platt Rosangela F, Alonso Jose-Manuel, Swadlow Harvey A, Bereshpolova Yulia

机构信息

Department of Psychological Sciences, University of Connecticut, Storrs, Connecticut.

Department of Biological Sciences, SUNY-Optometry, New York, New York.

出版信息

J Neurosci. 2025 Jan 22;45(4):e1116242024. doi: 10.1523/JNEUROSCI.1116-24.2024.

Abstract

Layer 4 (L4) of rabbit V1 contains fast-spike GABAergic interneurons (suspected inhibitory interneurons, SINs) that receive potent synaptic input from the LGN and generate fast, local feedforward inhibition. These cells display receptive fields with overlapping ON/OFF subregions, nonlinear spatial summation, very broad orientation/directional tuning, and high spontaneous and visually driven firing rates. Fast-spike interneurons are also found in Layer 5 (L5), which receives a much sparser input from the LGN, but the response properties and thalamocortical connectivity of L5 SINs are relatively unstudied. Here, we study L5 SINs in awake rabbits (both sexes) and compare their response properties with previously studied SINs of L4. We also assess thalamocortical connectivity of L5 SINs, examining cross-correlation of retinotopically aligned LGN-SIN spike trains and L5 SIN responses to electrical stimulation of the LGN. These analyses confirmed that many L5 SINs, like L4 SINs, receive a strong, fast monosynaptic drive from the LGN. Moreover, these LGN-connected L5 SINs had response properties similar to those of L4 SINs and were predominantly found in the upper half of L5. In contrast, L5 SINs with longer synaptic latencies to LGN stimulation displayed (1) sharper orientation tuning, (2) longer visual response latencies, (3) lower spontaneous and (4) visually driven firing rates, and (5) were found in the deeper half of L5. We suggest that the long-latency synaptic responses in such L5 SINs reflect a multisynaptic intracortical pathway that generates a different constellation of response properties than seen in L5 SINs that are driven directly by LGN input.

摘要

兔初级视皮层第4层(L4)包含快速放电的γ-氨基丁酸能中间神经元(疑似抑制性中间神经元,SINs),这些神经元从外侧膝状体核(LGN)接收强大的突触输入,并产生快速的局部前馈抑制。这些细胞的感受野具有重叠的开/关子区域、非线性空间总和、非常宽泛的方向/方向调谐,以及高自发和视觉驱动的放电率。快速放电中间神经元也存在于第5层(L5),该层从LGN接收的输入要稀疏得多,但L5层SINs的反应特性和丘脑皮质连接性相对较少被研究。在这里,我们研究清醒兔(雌雄均有)的L5层SINs,并将它们的反应特性与先前研究的L4层SINs进行比较。我们还评估L5层SINs的丘脑皮质连接性,检查视网膜拓扑对齐的LGN-SIN尖峰序列的互相关性以及L5层SINs对LGN电刺激的反应。这些分析证实,许多L5层SINs与L4层SINs一样,从LGN接收强大、快速的单突触驱动。此外,这些与LGN相连的L5层SINs具有与L4层SINs相似的反应特性,并且主要位于L5层的上半部分。相比之下,对LGN刺激具有较长突触潜伏期的L5层SINs表现出:(1)更尖锐的方向调谐,(2)更长的视觉反应潜伏期,(3)更低的自发和(4)视觉驱动放电率,以及(5)位于L5层的下半部分。我们认为,此类L5层SINs中的长潜伏期突触反应反映了一条多突触皮质内通路,该通路产生的反应特性组合与直接由LGN输入驱动的L5层SINs不同。

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