In the mammalian visual system, information from the retina streams into parallel bottom-up pathways. It remains unclear how these pathways interact to contribute to contextual modulation of visual cortical processing. By optogenetic inactivation and activation of mouse lateral posterior nucleus (LP) of thalamus, a homolog of pulvinar, or its projection to primary visual cortex (V1), we found that LP contributes to surround suppression of layer (L) 2/3 responses in V1 by driving L1 inhibitory neurons. This results in subtractive suppression of visual responses and an overall enhancement of orientation, direction, spatial, and size selectivity. Neurons in V1-projecting LP regions receive bottom-up input from the superior colliculus (SC) and respond preferably to non-patterned visual noise. The noise-dependent LP activity allows V1 to "cancel" noise effects and maintain its orientation selectivity under varying noise background. Thus, the retina-SC-LP-V1 pathway forms a differential circuit with the canonical retino-geniculate pathway to achieve context-dependent sharpening of visual representations.
A Differential Circuit via Retino-Colliculo-Pulvinar Pathway Enhances Feature Selectivity in Visual Cortex through Surround Suppression.
通过视网膜-上丘-丘脑枕通路建立的差分回路通过周围抑制增强视觉皮层的特征选择性
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作者:Fang Qi, Chou Xiao-Lin, Peng Bo, Zhong Wen, Zhang Li I, Tao Huizhong Whit
| 期刊: | Neuron | 影响因子: | 15.000 |
| 时间: | 2020 | 起止号: | 2020 Jan 22; 105(2):355-369 |
| doi: | 10.1016/j.neuron.2019.10.027 | 研究方向: | 信号转导 |
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