Miller R F, Dacheux R F
J Gen Physiol. 1976 Jun;67(6):639-59. doi: 10.1085/jgp.67.6.639.
Intracellular recordings from receptors, horizontal cells, bipolars, and amacrines have been carried out in the perfused mudpuppy eyecup. The introduction of a chloride-free (c-f) medium results in initial transient potential changes in many cells followed by a slow loss of light-evoked activity of the depolarizing bipolar, the horizontal cell, and the on depolarization of amacrine cells. The hyperpolarizing bipolar remains responsive to light stimulation in a c-f medium, but the antagonistic surround mechanism is abolished. These effects are reversible after returning to a normal ionic medium. The results of this study provide insight into the retinal connections which underlie ganglion cell receptive field organization. It is concluded that the depolarizing bipolar is excitatory to on ganglion cells and is also the pathway for on-excitation of on-off cells. The hyperpolarizing bipolar mediates the off discharge of off and on-off cells. Amacrine cells receive input from both depolarizing and hyperpolarizing bipolar cells. These findings raise the possibility that transmembrane movements of chloride ions are critical for the light responsiveness of horizontal and depolarizing bipolar cell activity.
在灌注的泥螈眼杯中对感受器、水平细胞、双极细胞和无长突细胞进行了细胞内记录。引入无氯(c-f)培养基会导致许多细胞最初出现短暂的电位变化,随后去极化双极细胞、水平细胞的光诱发活动缓慢丧失,以及无长突细胞的去极化。超极化双极细胞在c-f培养基中仍对光刺激有反应,但拮抗的周边机制被消除。回到正常离子培养基后,这些效应是可逆的。这项研究的结果为神经节细胞感受野组织背后的视网膜连接提供了见解。得出的结论是,去极化双极细胞对on神经节细胞具有兴奋性,也是on-off细胞on兴奋的途径。超极化双极细胞介导off和on-off细胞的off放电。无长突细胞接收来自去极化和超极化双极细胞的输入。这些发现增加了氯离子跨膜运动对水平细胞和去极化双极细胞活动的光反应至关重要的可能性。