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龟视网膜中从红色视锥细胞到水平细胞的信号传递。

Signal transmission from red cones to horizontal cells in the turtle retina.

作者信息

Normann R A, Perlman I

出版信息

J Physiol. 1979 Jan;286:509-24. doi: 10.1113/jphysiol.1979.sp012634.

Abstract
  1. Intracellular recordings were made from L-type horizontal cells in the retina of the turtle Pseudemys scripta elegans. The responses were evoked by 500 msec pulses of 'white' light. 2. L-type horizontal cells were classified as either, 'small receptive field' s.r.f. or 'large receptive field' l.r.f. based upon (1) receptive field size and (2) kinetics of responses to test flashes covering small and big spots. 3. Constant illumination of the entire receptive field, with any intensity studied, evoked a response that reached a peak and then slowly sagged back to a steady-state level that was about half the peak response. 4. Termination of backgrounds resulted in a very fast recovery of the membrane potential that overshot the dark-adapted potential. This 'off' response had faster kinetics in horizontal cells than in red cones. 5. The intensity-response curve measured around any background intensity was shifted along the log intensity axis toward higher test intensities. The curves obtained under light-adapted conditions were sharper than the curve measured in the dark-adapted state. 6. The photoresponses of red cones and s.r.f. horizontal cells were compared under similar states of adaptation. In the dark-adapted state of the gain, expressed as the millivolt change in the horizontal cell per millivolt change in the cone, was not linearly related to cone potential, and was highest for dim stimuli. Light-adaption modified the synaptic transmission to make the horizontal cells most sensitive to light modulation around the background illumination. 7. The mechanisms by which signal transmission can be modified by light-adaptation are discussed in terms of transmitter release by the presynaptic terminals and its binding to post-synaptic sites.
摘要
  1. 对锦龟(Pseudemys scripta elegans)视网膜中的L型水平细胞进行了细胞内记录。反应由500毫秒的“白色”光脉冲诱发。2. 根据(1)感受野大小和(2)对覆盖小光斑和大光斑的测试闪光的反应动力学,将L型水平细胞分为“小感受野”(s.r.f.)或“大感受野”(l.r.f.)。3. 以任何研究强度对整个感受野进行持续光照,会诱发一个反应,该反应达到峰值后然后缓慢下降回到约为峰值反应一半的稳态水平。4. 背景光终止导致膜电位非常快速地恢复,超过暗适应电位。这种“关闭”反应在水平细胞中的动力学比在红色视锥细胞中更快。5. 在任何背景强度附近测量的强度 - 反应曲线沿对数强度轴朝着更高的测试强度移动。在光适应条件下获得的曲线比在暗适应状态下测量的曲线更陡峭。6. 在相似的适应状态下比较了红色视锥细胞和小感受野水平细胞的光反应。在暗适应状态下,增益(表示为视锥细胞每毫伏变化时水平细胞的毫伏变化)与视锥细胞电位并非线性相关,并且在弱刺激时最高。光适应改变了突触传递,使水平细胞对背景光照附近的光调制最敏感。7. 根据突触前终末释放递质及其与突触后位点的结合,讨论了光适应可改变信号传递的机制。

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