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猫视网膜中视杆和视锥信号的汇聚。

Convergence of rod and cone signals in the cat's retina.

作者信息

Enroth-Cugell C, Hertz B G, Lennie P

出版信息

J Physiol. 1977 Jul;269(2):297-318. doi: 10.1113/jphysiol.1977.sp011903.

Abstract
  1. In an attempt to understand the convergence of rod and cone signals in the cat's retina, ganglion cells that received inputs from both rods and cones were stimulated using lights chosen to excite one or other receptor system or both together.2. If a mesopic background was chosen to allow the ganglion cell to be excited by a blue-green test flash primarily through rods and a deep red flash primarily through cones, one light could not be alternated with the other without eliciting a response from the cell.3. This appears to be a result of the different temporal properties of the scotopic and photopic systems. On the mesopic background responses to blue-green test flashes were transient. Responses to red test flashes arose with similar latency, but were more sustained.4. Rod and cone systems responded with similar latencies in the presence of the mesopic background that substantially light-adapted the rod system but left the full sensitivity of the cone system undiminished. When equivalently light-adapted, the cone system was faster.5. When brief flashes that acted through rods were presented with flashes that acted through cones the ganglion cell's response was the sum of the responses to the two flashes presented separately, as long as the flashes were weak. This linear relation ceased to hold when flashes were strong, but the breakdown appears not to be the result of mutual inhibition between rod and cone signals.6. When a background light excited both rod and cone systems it appeared to reduce sensitivity independently in each.7. The scotopic and photopic receptive fields of a given ganglion cell always were of the same type, on- or off-centre, and, within the limits of measurement, the central regions of the receptive fields were concentric and both the same size.
摘要
  1. 为了了解猫视网膜中视杆细胞和视锥细胞信号的汇聚情况,研究人员使用特定光线刺激那些同时接收视杆细胞和视锥细胞输入的神经节细胞,这些光线被选择用于单独激发一种或另一种受体系统,或者同时激发两者。

  2. 如果选择一个中间视觉背景,使神经节细胞主要通过视杆细胞被蓝绿色测试闪光激发,主要通过视锥细胞被深红色闪光激发,那么在不引起细胞反应的情况下,一种光不能与另一种光交替出现。

  3. 这似乎是由于暗视觉和明视觉系统不同的时间特性导致的。在中间视觉背景下,对蓝绿色测试闪光的反应是瞬态的。对红色测试闪光的反应潜伏期相似,但更持久。

  4. 在中间视觉背景下,视杆细胞和视锥细胞系统的反应潜伏期相似,这种背景对视杆细胞系统有显著的光适应作用,但视锥细胞系统的全部敏感性未受影响。当处于同等光适应状态时,视锥细胞系统更快。

  5. 当通过视杆细胞起作用的短暂闪光与通过视锥细胞起作用的闪光同时出现时,只要闪光较弱,神经节细胞的反应就是对分别呈现的两种闪光反应的总和。当闪光很强时,这种线性关系不再成立,但这种破坏似乎不是视杆细胞和视锥细胞信号之间相互抑制的结果。

  6. 当背景光同时激发视杆细胞和视锥细胞系统时,它似乎会分别独立地降低两者的敏感性。

  7. 给定神经节细胞的暗视觉和明视觉感受野总是同一类型,即中心开或中心闭,并且在测量范围内,感受野的中心区域是同心的,且大小相同。

相似文献

1
Convergence of rod and cone signals in the cat's retina.猫视网膜中视杆和视锥信号的汇聚。
J Physiol. 1977 Jul;269(2):297-318. doi: 10.1113/jphysiol.1977.sp011903.
2
Cone signals in the cat's retina.猫视网膜中的视锥信号。
J Physiol. 1977 Jul;269(2):273-96. doi: 10.1113/jphysiol.1977.sp011902.

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Rod-cone signal interference in the retina shapes perception in primates.视网膜中的视杆-视锥信号干扰塑造了灵长类动物的感知。
Front Ophthalmol (Lausanne). 2023 Jul 31;3:1230084. doi: 10.3389/fopht.2023.1230084. eCollection 2023.

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2
Retinal stimulation by light substitution.通过光替代进行视网膜刺激。
J Physiol. 1959 Dec;149(2):288-302. doi: 10.1113/jphysiol.1959.sp006340.
10
The rod after-effect in S-potentials from the cat retina.猫视网膜S电位中的视杆后效应。
Vision Res. 1969 Nov;9(11):1345-55. doi: 10.1016/0042-6989(69)90071-6.

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