Levitt Jonathan B, Lund Jennifer S
Department of Biology, City College of the City University of New York, New York 10031, USA.
Vis Neurosci. 2002 Jul-Aug;19(4):439-52. doi: 10.1017/s0952523802194065.
We recorded activity of single units in macaque monkey primary visual cortex (V1) to define the retinotopic extent of the visual inputs that drive or modulate V1 neuron responses in parafoveal and peripheral (calcarine) cortex. We used high-contrast drifting grating stimuli to define the extent of the area over which responses summate and the extent of the receptive-field surround. We found responses of most V1 cells to summate over 1 deg, with a suppressive surround typically twice that in diameter, though for some cells (even in parafoveal V1) surrounds exceeded 13 deg in diameter. Surprisingly, we found no significant laminar differences in these dimensions or in the strength of surround suppression. We found that surround suppression in most cells arises from both the ends and sides of the receptive field. Our measures indicate that the strongest modulatory input arises from regions immediately adjacent to the excitatory summation area. These physiological measures suggest that the high-contrast summation field of V1 neurons can be accounted for by the sum of lateral geniculate nucleus (LGN) inputs offered to the local cortical column, with monosynaptic lateral connections within area V1 adding the larger dimensions of the low-contrast summation field and the near surround. Neither of these inputs suffice to explain the largest surrounds, which most likely derive from feedback from extrastriate visual areas.
我们记录了猕猴初级视觉皮层(V1)中单个神经元的活动,以确定驱动或调节中央凹旁和外周(距状)皮层中V1神经元反应的视觉输入的视网膜拓扑范围。我们使用高对比度漂移光栅刺激来确定反应总和区域的范围以及感受野周围区域的范围。我们发现大多数V1细胞的反应总和范围超过1度,抑制性周围区域的直径通常是其两倍,不过对于一些细胞(甚至是中央凹旁的V1细胞),周围区域的直径超过13度。令人惊讶的是,我们发现在这些维度或周围抑制强度方面没有显著的层间差异。我们发现大多数细胞的周围抑制来自感受野的两端和侧面。我们的测量表明,最强的调制输入来自紧邻兴奋性总和区域的区域。这些生理学测量表明,V1神经元的高对比度总和场可以由提供给局部皮层柱的外侧膝状体核(LGN)输入之和来解释,V1区域内的单突触侧向连接增加了低对比度总和场和近周围区域的更大尺寸。这两种输入都不足以解释最大的周围区域,其很可能来自纹外视觉区域的反馈。