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层流回路组织和小鼠视觉皮层的反应调节。

Laminar circuit organization and response modulation in mouse visual cortex.

机构信息

Department of Anatomy and Neurobiology, School of Medicine, University of California Irvine, CA, USA.

出版信息

Front Neural Circuits. 2012 Oct 5;6:70. doi: 10.3389/fncir.2012.00070. eCollection 2012.

Abstract

The mouse has become an increasingly important animal model for visual system studies, but few studies have investigated local functional circuit organization of mouse visual cortex. Here we used our newly developed mapping technique combining laser scanning photostimulation (LSPS) with fast voltage-sensitive dye (VSD) imaging to examine the spatial organization and temporal dynamics of laminar circuit responses in living slice preparations of mouse primary visual cortex (V1). During experiments, LSPS using caged glutamate provided spatially restricted neuronal activation in a specific cortical layer, and evoked responses from the stimulated layer to its functionally connected regions were detected by VSD imaging. In this study, we first provided a detailed analysis of spatiotemporal activation patterns at specific V1 laminar locations and measured local circuit connectivity. Then we examined the role of cortical inhibition in the propagation of evoked cortical responses by comparing circuit activity patterns in control and in the presence of GABAa receptor antagonists. We found that GABAergic inhibition was critical in restricting layer-specific excitatory activity spread and maintaining topographical projections. In addition, we investigated how AMPA and NMDA receptors influenced cortical responses and found that blocking AMPA receptors abolished interlaminar functional projections, and the NMDA receptor activity was important in controlling visual cortical circuit excitability and modulating activity propagation. The NMDA receptor antagonist reduced neuronal population activity in time-dependent and laminar-specific manners. Finally, we used the quantitative information derived from the mapping experiments and presented computational modeling analysis of V1 circuit organization. Taken together, the present study has provided important new information about mouse V1 circuit organization and response modulation.

摘要

老鼠已成为视觉系统研究中越来越重要的动物模型,但很少有研究调查过鼠标视觉皮层的局部功能回路组织。在这里,我们使用我们新开发的结合激光扫描光刺激(LSPS)和快速电压敏感染料(VSD)成像的映射技术,来研究活体切片小鼠初级视觉皮层(V1)中分层电路响应的空间组织和时间动态。在实验过程中,使用笼形谷氨酸的 LSPS 可在特定皮层层中提供空间受限的神经元激活,并通过 VSD 成像检测来自受刺激层的刺激响应。在这项研究中,我们首先详细分析了特定 V1 层位置的时空激活模式,并测量了局部回路连接。然后,我们通过比较对照和 GABAa 受体拮抗剂存在下的回路活动模式,研究了皮质抑制在诱发皮质反应传播中的作用。我们发现 GABA 能抑制对于限制层特异性兴奋性活动的传播和维持拓扑投影至关重要。此外,我们研究了 AMPA 和 NMDA 受体如何影响皮质反应,发现阻断 AMPA 受体可消除层间功能投射,而 NMDA 受体活性对于控制视觉皮质回路兴奋性和调节活动传播很重要。NMDA 受体拮抗剂以时间依赖和分层特异性的方式减少神经元群体活动。最后,我们使用映射实验得出的定量信息,并对 V1 回路组织进行了计算模型分析。综上所述,本研究为鼠标 V1 回路组织和响应调制提供了重要的新信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0179/3464489/b5ce3748fb02/fncir-06-00070-g0001.jpg

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