Kogo N, Rubio D M, Ariel M
Department of Anatomy and Neurobiology, Saint Louis University, Saint Louis, Missouri 63104, USA.
J Neurosci. 1998 Apr 1;18(7):2673-84. doi: 10.1523/JNEUROSCI.18-07-02673.1998.
Neurons in turtle accessory optic system [basal optic nucleus (BON)] were recorded to study convergence of retinal afferents, using whole-cell patch electrodes in a reduced in vitro brainstem preparation with the eyes attached. BON cells primarily exhibit EPSPs from a contralateral retinal ganglion cell input and generate an output of action potentials. Visual responses were evoked by different directions of either full-field or local moving patterns. Direction tuning of action potentials was compared with that of EPSPs detected by passing the membrane voltage through an AC amplifier and window discriminator. This rough measure of retinal input indicated that the direction tuning of the full-field excitatory input from the retina matched that of the spike output for the same BON cell. Using local patterns within the receptive fields of the BON cells, it was estimated that one to four adjacent retinal inputs were being stimulated. The direction tuning of these inputs had preferred directions that were similar to that of the full-field spike output of the cell, irrespective of where the small window was placed within the receptive field. Because more than one retinal input may have been stimulated by the small stimulus window, subsets of those EPSPs that may represent responses of a single retinal afferent were identified based on their amplitude and rise time. Again, the preferred direction of those putative single retinal afferents matched the direction tuning of the spike output of the BON cell. These findings are discussed in terms of the formation of the retinal slip signal by the BON.
在带有眼睛的离体脑干简化标本中,使用全细胞膜片电极记录海龟附属视觉系统[基底视核(BON)]中的神经元,以研究视网膜传入纤维的汇聚情况。BON细胞主要表现出来自对侧视网膜神经节细胞输入的兴奋性突触后电位(EPSP),并产生动作电位输出。通过全场或局部移动模式的不同方向诱发视觉反应。将动作电位的方向调谐与通过交流放大器和窗口鉴别器传递膜电压检测到的EPSP的方向调谐进行比较。这种对视网膜输入的粗略测量表明,来自视网膜的全场兴奋性输入的方向调谐与同一BON细胞的尖峰输出的方向调谐相匹配。使用BON细胞感受野内的局部模式,估计有一到四个相邻的视网膜输入受到刺激。这些输入的方向调谐具有与细胞全场尖峰输出相似的偏好方向,而与小窗口在感受野内的位置无关。由于小刺激窗口可能刺激了多个视网膜输入,根据其幅度和上升时间识别出那些可能代表单个视网膜传入纤维反应的EPSP子集。同样,那些假定的单个视网膜传入纤维的偏好方向与BON细胞尖峰输出的方向调谐相匹配。将根据BON形成视网膜滑动信号的情况对这些发现进行讨论。