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投射到小鼠初级视皮层的外侧后核轴突的反应选择性。

Response Selectivity of the Lateral Posterior Nucleus Axons Projecting to the Mouse Primary Visual Cortex.

机构信息

Department of Physiology, School of Medicine, The University of Tokyo, Tokyo, Japan.

World Premier International Research Center - International Research Center for Neurointelligence (WPI-IRCN), The University of Tokyo Institutes for Advanced Study (UTIAS), Tokyo, Japan.

出版信息

Front Neural Circuits. 2022 Feb 28;16:825735. doi: 10.3389/fncir.2022.825735. eCollection 2022.

Abstract

Neurons in the mouse primary visual cortex (V1) exhibit characteristic response selectivity to visual stimuli, such as orientation, direction and spatial frequency selectivity. Since V1 receives thalamic visual inputs from the lateral geniculate nucleus (LGN) and lateral posterior nucleus (LPN), the response selectivity of the V1 neurons could be influenced mostly by these inputs. However, it remains unclear how these two thalamic inputs contribute to the response selectivity of the V1 neurons. In this study, we examined the orientation, direction and spatial frequency selectivity of the LPN axons projecting to V1 and compared their response selectivity with our previous results of the LGN axons in mice. For this purpose, the genetically encoded calcium indicator, GCaMP6s, was locally expressed in the LPN using the adeno-associated virus (AAV) infection method. Visual stimulations were presented, and axonal imaging was conducted in V1 by two-photon calcium imaging . We found that LPN axons primarily terminate in layers 1 and 5 and, to a lesser extent, in layers 2/3 and 4 of V1, while LGN axons mainly terminate in layer 4 and, to a lesser extent, in layers 1 and 2/3 of V1. LPN axons send highly orientation- and direction-selective inputs to all the examined layers in V1, whereas LGN axons send highly orientation- and direction-selective inputs to layers 1 and 2/3 but low orientation and direction selective inputs to layer 4 in V1. The distribution of preferred orientation and direction was strongly biased toward specific orientations and directions in LPN axons, while weakly biased to cardinal orientations and directions in LGN axons. In spatial frequency tuning, both the LPN and LGN axons send selective inputs to V1. The distribution of preferred spatial frequency was more diverse in the LPN axons than in the LGN axons. In conclusion, LPN inputs to V1 are functionally different from LGN inputs and may have different roles in the orientation, direction and spatial frequency tuning of the V1 neurons.

摘要

小鼠初级视觉皮层(V1)中的神经元对视觉刺激表现出特征性的反应选择性,例如朝向、方向和空间频率选择性。由于 V1 从外侧膝状体核(LGN)和外侧后核(LPN)接收丘脑视觉输入,因此 V1 神经元的反应选择性可能主要受这些输入的影响。然而,目前尚不清楚这两个丘脑输入如何有助于 V1 神经元的反应选择性。在这项研究中,我们检查了投射到 V1 的 LPN 轴突的朝向、方向和空间频率选择性,并将其与我们之前在小鼠中的 LGN 轴突的结果进行了比较。为此,使用腺相关病毒(AAV)感染方法在 LPN 中局部表达了基因编码的钙指示剂 GCaMP6s。通过双光子钙成像进行视觉刺激和 V1 中的轴突成像。我们发现,LPN 轴突主要终止于 V1 的第 1 层和第 5 层,并且在较小程度上终止于第 2/3 层和第 4 层,而 LGN 轴突主要终止于第 4 层,并且在较小程度上终止于第 1 层和第 2/3 层。LPN 轴突向 V1 的所有检查层发送高度朝向和方向选择性的输入,而 LGN 轴突向 V1 的第 1 层和第 2/3 层发送高度朝向和方向选择性的输入,但向第 4 层发送低朝向和方向选择性的输入。LPN 轴突的优势取向和方向分布强烈偏向于特定的取向和方向,而 LGN 轴突的优势取向和方向分布则偏向于主要取向和方向。在空间频率调谐中,LPN 和 LGN 轴突都向 V1 发送选择性输入。LPN 轴突的优势空间频率分布比 LGN 轴突更为多样化。总之,LPN 对 V1 的输入与 LGN 输入在功能上不同,并且可能在 V1 神经元的朝向、方向和空间频率调谐中发挥不同的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9e6/8918919/6b50e1f81ce4/fncir-16-825735-g001.jpg

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