首页> 美国卫生研究院文献>The Journal of Physiology >Synaptic action mediating cone responses to annular illumination in the retina of the larval tiger salamander.
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Synaptic action mediating cone responses to annular illumination in the retina of the larval tiger salamander.

机译:突触作用介导锥体对幼虎action视网膜中环形照明的响应。

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摘要

1. Responses of salamander cones to steps of light on their surrounding area were intracellularly recorded through micropipettes filled with 2 M-potassium acetate or 2 M-potassium chloride. 2. Using 2 M-potassium acetate, cone step responses showed a larger relaxation for a 1100 micrometers diameter spot than for a 100 micrometers spot, but dim annular illumination failed to evoke any detectable response. With 2 M-potassium chloride the larger spot or an anulus evoked responses that were mainly or purely depolarizing, respectively, while the responses to the smaller spot were still hyperpolarizing. 3. The depolarizing response to annular illumination had an increased amplitude immediately after discontinuing the injection of inward current through a micropipette filled with 2 M-potassium chloride. 4. Depolarization by extrinsic current reversed the polarity of the depolarizing response to annular illumination. 5. It is suggested that the enhancement of the depolarizing influence of the surround is due to an increase in the intracellular concentration of chloride ions, which issue from the electrodes by passive diffusion or electrophoresis. Taking into consideration the effect of depolarizing current, it would follow that surround illumination induces an increase in the chloride conductance of the cone membrane. 6. Preliminary observations on the properties of the enhanced surround response reveal a slow time course and a receptive field of more than 270 micrometers radius.
机译:1.通过充满2 M乙酸钾或2 M氯化钾的微量移液器在细胞内记录sal锥体对周围光步的反应。 2.使用2 M醋酸钾时,锥度阶跃响应显示出直径1100微米的斑点比100​​微米的斑点更大的松弛,但是昏暗的环形照明无法引起任何可检测到的响应。使用2 M氯化钾时,较大的斑点或环带分别引起主要或完全去极化的响应,而对较小斑点的响应仍为超极化。 3.在中断通过填充有2 M氯化钾的微量移液器注入电流之后,对环形照明的去极化响应立即增加了幅度。 4.外在电流引起的去极化反转了对环形照明的去极化响应的极性。 5.建议周围环境的去极化作用增强是由于细胞内氯离子浓度的增加所引起的,氯离子的浓度是通过被动扩散或电泳从电极发出的。考虑到去极化电流的影响,随之而来的是周围的照明会引起锥膜氯化物电导的增加。 6.对增强的环绕声响应特性的初步观察表明,响应时间较慢,并且接收磁场的半径大于270微米。

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