Tsai J, Waldeck R F, Gruberg E R
Biology Department, Temple University, Philadelphia, Pa., USA.
Brain Behav Evol. 1995;46(2):95-107. doi: 10.1159/000113262.
The organization of retinotectal fibers in the optic chiasm was investigated using horseradish peroxidase (HRP) histochemistry and electrophysiological recording. HRP injection into a small region of the tectum led to retrograde staining of labeled fibers in a circumscribed region of the chiasm and staining of labeled ganglion cells in the contralateral retina. In each instance labeled tissue was spread over a greater proportion of the area of a chiasm section than over the flattened retina. Fibers originating in central (older) retina are located in dorsal chiasm. Fibers originating in peripheral (younger) retina are located in ventral chiasm. Viewed with the electron microscope, labeled unmyelinated fibers are admixed with labeled myelinated fibers. Neuronal activity was monitored with an extracellular microelectrode from points in dorsoventral tracks in the chiasm. Multiple units were recorded at each chiasm location. Using visual stimuli, the receptive fields of the units were mapped. The fields were distributed along an arc across the visual field. At ventral chiasm recording sites the arc was in the peripheral part of the visual field. In succeeding dorsal sites the arcs were concentrically arranged so that the more dorsal the chiasm recording site, the more central was the arc in the visual field. Thus, in the optic chiasm, retinal fibers appear to be organized chronotopically but not retinotopically. Fibers of the same age but from different locations in the retina are mixed together.
利用辣根过氧化物酶(HRP)组织化学和电生理记录技术,对视交叉中视网膜 - 顶盖纤维的组织方式进行了研究。将HRP注入顶盖的一个小区域,会导致视交叉限定区域内标记纤维的逆行染色以及对侧视网膜中标记神经节细胞的染色。在每种情况下,标记组织在视交叉切片区域中所占的比例大于在扁平视网膜上所占的比例。起源于中央(较古老)视网膜的纤维位于视交叉的背侧。起源于周边(较年轻)视网膜的纤维位于视交叉的腹侧。在电子显微镜下观察,标记的无髓纤维与标记的有髓纤维混合在一起。用细胞外微电极从视交叉背腹径迹上的各点监测神经元活动。在视交叉的每个位置记录多个单位。使用视觉刺激,绘制这些单位的感受野。这些感受野沿弧线分布在整个视野中。在视交叉腹侧记录位点,弧线位于视野的周边部分。在随后的背侧位点,弧线呈同心排列,因此视交叉记录位点越靠背侧,视野中弧线的位置越靠中央。因此,在视交叉中,视网膜纤维似乎是按时间顺序而非按视网膜拓扑方式组织的。相同年龄但来自视网膜不同位置的纤维混合在一起。