Hei Xiaojuan, Stoelzel Carl R, Zhuang Jun, Bereshpolova Yulia, Huff Joseph M, Alonso Jose-Manuel, Swadlow Harvey A
Department of Psychology, University of Connecticut, Storrs, Connecticut; and.
Department of Psychology, University of Connecticut, Storrs, Connecticut; and Department of Biological Sciences, State University of New York, New York, New York.
J Neurophysiol. 2014 Jul 15;112(2):362-73. doi: 10.1152/jn.00121.2014. Epub 2014 Apr 30.
Directionally selective (DS) neurons are found in the retina and lateral geniculate nucleus (LGN) of rabbits and rodents, and in rabbits, LGN DS cells project to primary visual cortex. Here, we compare visual response properties of LGN DS neurons with those of layer 4 simple cells, most of which show strong direction/orientation selectivity. These populations differed dramatically, suggesting that DS cells may not contribute significantly to the synthesis of simple receptive fields: 1) whereas the first harmonic component (F1)-to-mean firing rate (F0) ratios of LGN DS cells are strongly nonlinear, those of simple cells are strongly linear; 2) whereas LGN DS cells have overlapped ON/OFF subfields, simple cells have either a single ON or OFF subfield or two spatially separate subfields; and 3) whereas the preferred directions of LGN DS cells are closely tied to the four cardinal directions, the directional preferences of simple cells are more evenly distributed. We further show that directional selectivity in LGN DS neurons is strongly enhanced by alertness via two mechanisms, 1) an increase in responses to stimulation in the preferred direction, and 2) an enhanced suppression of responses to stimuli moving in the null direction. Finally, our simulations show that these two consequences of alertness could each serve, in a vector-based population code, to hasten the computation of stimulus direction when rabbits become alert.
在兔子和啮齿动物的视网膜及外侧膝状体核(LGN)中发现了方向选择性(DS)神经元,并且在兔子中,LGN的DS细胞投射到初级视觉皮层。在这里,我们比较了LGN的DS神经元与第4层简单细胞的视觉反应特性,其中大多数简单细胞表现出强烈的方向/取向选择性。这些群体有显著差异,这表明DS细胞可能对简单感受野的合成贡献不大:1)LGN的DS细胞的一次谐波分量(F1)与平均放电率(F0)的比率是强烈非线性的,而简单细胞的该比率是强烈线性的;2)LGN的DS细胞具有重叠的开/关子场,而简单细胞具有单个开或关子场或两个空间上分开的子场;3)LGN的DS细胞的偏好方向与四个基本方向紧密相关,而简单细胞的方向偏好分布更均匀。我们进一步表明,LGN的DS神经元中的方向选择性通过两种机制被警觉性强烈增强,1)对偏好方向刺激的反应增加,2)对零方向移动刺激反应的抑制增强。最后,我们的模拟表明,警觉性的这两个结果在基于向量的群体编码中,都可以在兔子变得警觉时加速刺激方向的计算。