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长时间暗适应过程中猫视网膜水平细胞的敏感性

Horizontal cell sensitivity in the cat retina during prolonged dark adaptation.

作者信息

Lankheet M J, Rowe M H, van Wezel R J, van de Grind W A

机构信息

Neuroethology, Helmholtz Institute, Universiteit Utrecht, The Netherlands.

出版信息

Vis Neurosci. 1996 Sep-Oct;13(5):885-96. doi: 10.1017/s0952523800009135.

Abstract

The effects of dark adaptation on the response properties of ganglion cells have been documented extensively in the cat retina. To pinpoint the different retinal mechanisms that underlie these effects, we studied the response characteristics of cat horizontal (H) cells during prolonged dark adaptation. H-cell responses were recorded intracellularly in the optically intact, in vivo eye. To disentangle rod and cone contributions, sensitivity changes during dark adaptation were tracked with white light and with monochromatic lights that favored either rod or cone excitation. Stable, long-lasting recordings allowed us to measure changes of sensitivity for adaptation periods up to 45 min. Thresholds for white light and 503-nm monochromatic light decreased steadily and in parallel. The maximum increase of sensitivity, after extinguishing a photopic adaptation light, was 1.8 log units only, reached after about 35 min. Sensitivity for 581-nm lights also increased steadily, but at a shallower slope. The steady increase of sensitivity was concomitant with a linear shift in resting membrane potential and with an increase in relative rod contribution to the threshold responses. Even though small-amplitude responses were rod dominated after prolonged dark adaptation, sensitivity to rod signals remained relatively low, compared to sensitivity of cone responses or to the absolute sensitivity of ganglion cells. This suggests that the cone-H-cell pathway plays no role in the dark-adapted cat retina.

摘要

暗适应对神经节细胞反应特性的影响在猫视网膜中已有广泛记载。为了明确这些影响背后不同的视网膜机制,我们研究了猫水平(H)细胞在长时间暗适应过程中的反应特性。在光学完整的活体眼中细胞内记录H细胞的反应。为了区分视杆和视锥的作用,利用白光以及有利于视杆或视锥兴奋的单色光跟踪暗适应过程中的敏感度变化。稳定、持久的记录使我们能够测量长达45分钟适应期内的敏感度变化。白光和503纳米单色光的阈值稳步且平行下降。在熄灭明适应光后,敏感度的最大增加仅为1.8个对数单位,约35分钟后达到。对581纳米光的敏感度也稳步增加,但斜率较缓。敏感度的稳步增加伴随着静息膜电位的线性变化以及视杆对阈值反应相对贡献的增加。尽管在长时间暗适应后小幅度反应以视杆为主,但与视锥反应的敏感度或神经节细胞的绝对敏感度相比,对视杆信号的敏感度仍然相对较低。这表明在暗适应的猫视网膜中,视锥-H细胞通路不起作用。

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