Cleland B G, Lee B B
J Physiol. 1985 Dec;369:249-68. doi: 10.1113/jphysiol.1985.sp015899.
We compared visual responses of cat lateral geniculate nucleus (l.g.n.) neurones with those of retinal ganglion cells providing their afferent inputs. Quantitative studies were made on twenty such pairs; eight X on-centre, seven Y on-centre, two X off-centre and three Y off-centre pairs. Receptive field centre locations of cell pairs with correlated activities were very closely superimposed, having a mean centre displacement of 1.6 minutes of arc for X cells and 11 minutes of arc for Y cells. With flashed spots and annuli, responses of l.g.n. cells were almost always smaller than those of their retinal afferents, with peaks and troughs in ganglion cell responses being faithfully followed in the geniculate neurones. This is consistent with almost all impulses from the l.g.n. cell being triggered by the afferent feeding its centre. With spots of different sizes and contrasts, modulation of responses by l.g.n. inhibition was obvious, but effects were complex. With moving bright-bar stimuli, although response histograms were clearly reshaped to some extent in the l.g.n., peak firing rates under different stimulus conditions were often merely attenuated by a constant factor for most l.g.n. cells in comparison with their retinal inputs. For velocity tuning curves, a few cell pairs showed selective attenuation at high speeds, while others showed it at low speeds. All the latter group appeared to have more than one major excitatory afferent. These changes in velocity tuning occurred across the X/Y classification, so that differences in velocity preference of the X and Y systems is more blurred in the l.g.n. than in the retina.
我们比较了猫外侧膝状核(l.g.n.)神经元与提供传入输入的视网膜神经节细胞的视觉反应。对二十对这样的细胞进行了定量研究;八对X中心兴奋型、七对Y中心兴奋型、两对X中心抑制型和三对Y中心抑制型。具有相关活动的细胞对的感受野中心位置非常紧密地重叠,X细胞的平均中心位移为1.6分视角,Y细胞为11分视角。对于闪烁的光点和光阑,l.g.n.细胞的反应几乎总是小于其视网膜传入神经的反应,神经节细胞反应的峰值和谷值在膝状神经元中得到忠实地跟随。这与来自l.g.n.细胞的几乎所有冲动都由其中心传入神经触发是一致的。对于不同大小和对比度的光点,l.g.n.抑制对反应的调制很明显,但影响很复杂。对于移动的亮条刺激,虽然l.g.n.中的反应直方图在某种程度上明显重塑,但与它们的视网膜输入相比,大多数l.g.n.细胞在不同刺激条件下的峰值放电率通常只是被一个恒定因子衰减。对于速度调谐曲线,一些细胞对在高速时表现出选择性衰减,而另一些在低速时表现出选择性衰减。所有后一组细胞似乎都有不止一个主要的兴奋性传入神经。速度调谐的这些变化发生在X/Y分类中,因此X和Y系统在速度偏好上的差异在l.g.n.中比在视网膜中更加模糊。