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鲤鱼视网膜内网状层的侧向作用:旋转风车图案刺激的影响。

Lateral actions at the inner plexiform layer of the carp retina: effects of turning windmill pattern stimulus.

作者信息

Sugawara K

出版信息

Vision Res. 1985;25(9):1179-86. doi: 10.1016/0042-6989(85)90031-8.

Abstract

Lateral action from amacrine to ganglion cells was studied in the isolated carp retina by using a truncated windmill pattern (TWP). About 25% of ganglion cells of both "on" and "off" center types were suppressed or enhanced in firing activity in response to TWP turning. The suppressed cells were more sensitive to slow turning velocities of TWP than the enhanced cells. In the "on-off" type amacrine cells, a steady depolarizing or hyperpolarizing component (less than several mV) was maintained by stationary TWP, while the cells were exclusively depolarized by turning TWP at a wide range of velocities. These results suggest that individual responses of ganglion cells induced by both stationary and turning TWP are depending on a balance between two factors: the polarizing direction of steady components of the "on-off" amacrine cells and the polarizing direction of ganglion cells synaptically produced by the amacrine cells.

摘要

通过使用截断风车图案(TWP),在离体鲤鱼视网膜中研究了从无长突细胞到神经节细胞的侧向作用。响应于TWP转动,约25%的“开”中心型和“关”中心型神经节细胞的放电活动受到抑制或增强。被抑制的细胞比增强的细胞对TWP的慢转动速度更敏感。在“开-关”型无长突细胞中,静止的TWP维持着稳定的去极化或超极化成分(小于几毫伏),而在很宽的速度范围内转动TWP时,细胞仅发生去极化。这些结果表明,静止和转动的TWP诱导的神经节细胞的个体反应取决于两个因素之间的平衡:“开-关”无长突细胞稳定成分的极化方向以及由无长突细胞突触产生的神经节细胞的极化方向。

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