School of Optometry, Université de Montréal, Quebec, CP 6128 Canada.
Cereb Cortex. 2020 Mar 14;30(3):1068-1086. doi: 10.1093/cercor/bhz149.
The pulvinar is the largest extrageniculate visual nucleus in mammals. Given its extensive reciprocal connectivity with the visual cortex, it allows the cortico-thalamocortical transfer of visual information. Nonetheless, knowledge of the nature of the pulvinar inputs to the cortex remains elusive. We investigated the impact of silencing the pulvinar on the contrast response function of neurons in 2 distinct hierarchical cortical areas in the cat (areas 17 and 21a). Pulvinar inactivation altered the response gain in both areas, but with larger changes observed in area 21a. A theoretical model was proposed, simulating the pulvinar contribution to cortical contrast responses by modifying the excitation-inhibition balanced state of neurons across the cortical hierarchy. Our experimental and theoretical data showed that the pulvinar exerts a greater modulatory influence on neuronal activity in area 21a than in the primary visual cortex, indicating that the pulvinar impact on cortical visual neurons varies along the cortical hierarchy.
丘脑枕是哺乳动物中最大的外节段视觉核团。鉴于其与视觉皮层广泛的互反连接,它允许视觉信息在皮质-丘脑-皮质之间传递。尽管如此,对于丘脑枕向皮层输入的性质的了解仍然难以捉摸。我们研究了沉默丘脑枕对猫的两个不同层次的皮质区域(17 区和 21a 区)中的神经元对比响应函数的影响。丘脑枕失活改变了两个区域的反应增益,但在 21a 区观察到更大的变化。提出了一个理论模型,通过改变整个皮质层次中神经元的兴奋-抑制平衡状态,模拟丘脑枕对皮质对比反应的贡献。我们的实验和理论数据表明,丘脑枕对 21a 区神经元活动的调制影响大于初级视觉皮层,这表明丘脑枕对皮质视觉神经元的影响沿皮质层次而变化。