Webb Ben S, Tinsley Chris J, Barraclough Nick E, Easton Alexander, Parker Amanda, Derrington Andrew M
School of Psychology, University of Nottingham, University Park, Nottingham, NG7 2RD, United Kingdom.
Vis Neurosci. 2002 Sep-Oct;19(5):583-92. doi: 10.1017/s0952523802195046.
It is well established that the responses of neurons in the lateral geniculate nucleus (LGN) can be modulated by feedback from visual cortex, but it is still unclear how cortico-geniculate afferents regulate the flow of visual information to the cortex in the primate. Here we report the effects, on the gain of LGN neurons, of differentially stimulating the extraclassical receptive field, with feedback from the striate cortex intact or inactivated in the marmoset monkey, Callithrix jacchus. A horizontally oriented grating of optimal size, spatial frequency, and temporal frequency was presented to the classical receptive field. The grating varied in contrast (range: 0-1) from trial to trial, and was presented alone, or surrounded by a grating of the same or orthogonal orientation, contained within either a larger annular field, or flanks oriented either horizontally or vertically. V1 was ablated to inactivate cortico-geniculate feedback. The maximum firing rate of LGN neurons was greater with V1 intact, but was reduced by visually stimulating beyond the classical receptive field. Large horizontal or vertical annular gratings were most effective in reducing the maximum firing rate of LGN neurons. Magnocellular neurons were most susceptible to this inhibition from beyond the classical receptive field. Extraclassical inhibition was less effective with V1 ablated. We conclude that inhibition from beyond the classical receptive field reduces the excitatory influence of V1 in the LGN. The net balance between cortico-geniculate excitation and inhibition from beyond the classical receptive field is one mechanism by which signals relayed from the retina to V1 are controlled.
外侧膝状体核(LGN)中神经元的反应可受视觉皮层反馈调节,这一点已得到充分证实,但在灵长类动物中,皮质-膝状体传入神经如何调节视觉信息向皮层的流动仍不清楚。在此,我们报告了在普通狨猴(Callithrix jacchus)中,在纹状皮层反馈完整或失活的情况下,差异刺激非经典感受野对LGN神经元增益的影响。将具有最佳大小、空间频率和时间频率的水平取向光栅呈现给经典感受野。每次试验中,光栅的对比度(范围:0-1)会发生变化,且单独呈现,或被相同或正交取向的光栅包围,这些光栅包含在更大的环形区域内,或侧翼呈水平或垂直取向。损毁V1以失活皮质-膝状体反馈。V1完整时,LGN神经元的最大放电率更高,但在经典感受野之外进行视觉刺激会使其降低。大的水平或垂直环形光栅在降低LGN神经元最大放电率方面最有效。大细胞神经元对来自经典感受野之外的这种抑制最敏感。V1损毁后,非经典抑制作用减弱。我们得出结论,来自经典感受野之外的抑制会降低V1对LGN的兴奋性影响。皮质-膝状体兴奋与来自经典感受野之外的抑制之间的净平衡是控制从视网膜传递到V1的信号的一种机制。