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猫视网膜中的视锥信号。

Cone signals in the cat's retina.

作者信息

Enroth-Cugell C, Hertz G, Lennie P

出版信息

J Physiol. 1977 Jul;269(2):273-96. doi: 10.1113/jphysiol.1977.sp011902.

Abstract
  1. The discharges of ganglion cells in the cat's retina were recorded under conditions intended to isolate the cone system.2. Stiles' two-colour threshold technique permitted the photopic system to be studied when at its highest sensitivity. The absolute sensitivity of a ganglion cell, expressed in equivalent photons of lambda(max) at the cornea per impulse discharged, was about 2500 times less when driven by cones than when driven by rods. This ratio improves to around 200 when allowance is made for the much smaller fraction absorbed by cones of photons incident on the cornea.3. The number of extra impulses discharged in response to a brief flash was approximately proportional to the number of photons in the flash, up to a limit.4. There was a region in the middle of the receptive field within which the area of a test spot and its illumination for threshold varied inversely. A flash extending over the peripheral part of the receptive field raised threshold above its minimum, presumably as a result of surround antagonism. Assessed from area-threshold curves, the balance of centre-surround antagonism in the photopic receptive field did not seem to depend upon background illumination.5. The threshold for a small (0.2 degrees ) flash confined to the middle of the receptive field was independent of background illumination until the background exceeded a particular level, the ;dark light' (I(o)). In different units this ranged about a mean of 7.89 log photons (560 nm equivalent) deg(-2) sec(-1). For backgrounds that exceeded I(o), threshold followed approximately Weber's law up to the highest illuminations that could be produced.6. With test flashes that filled the centre of the receptive field, the Weber fraction (test flash illumination/background illumination) in some units fell below 1%.7. Changes in the time course and latency of response accompanied the changes in sensitivity caused by alterations in background illumination. Responses of both X- and Y-cells became more transient and faster.8. The loss of sensitivity to a test flash brought about by a steady background light depended upon the size of that light. Sensitivity varied inversely with background area within a central region that matched closely the summing area for test flashes.
摘要
  1. 在旨在分离视锥系统的条件下,记录了猫视网膜中神经节细胞的放电情况。

  2. 斯泰尔斯的双色阈值技术使得在明视觉系统最高灵敏度时对其进行研究成为可能。以每次放电时角膜处等效于λ(max)的光子数来表示,神经节细胞的绝对灵敏度在由视锥细胞驱动时比由视杆细胞驱动时约低2500倍。当考虑到角膜上入射光子中被视锥细胞吸收的比例小得多时,这个比值提高到约200。

  3. 响应短暂闪光而额外发放的冲动数量在达到一定限度之前,大约与闪光中的光子数量成正比。

  4. 在感受野中部存在一个区域,在该区域内测试光斑的面积及其阈值照明呈反比变化。覆盖感受野周边部分的闪光会使阈值升高到其最小值以上,推测这是周边拮抗作用的结果。从面积 - 阈值曲线评估,明视觉感受野中中心 - 周边拮抗作用的平衡似乎不依赖于背景照明。

  5. 局限于感受野中部的小(0.2度)闪光的阈值在背景超过特定水平即“暗光”(I(o))之前与背景照明无关。以不同单位表示,其范围约为平均7.89 log光子(560纳米等效)度(-2)秒(-1)。对于超过I(o)的背景,阈值在可产生的最高照明度之前大致遵循韦伯定律。

  6. 对于充满感受野中心的测试闪光,某些单位中的韦伯分数(测试闪光照明/背景照明)低于1%。

  7. 响应的时间进程和潜伏期的变化伴随着由背景照明改变引起的灵敏度变化。X细胞和Y细胞的响应都变得更短暂且更快。

  8. 稳定背景光导致的对测试闪光的灵敏度损失取决于该光的大小。在与测试闪光的总和区域紧密匹配的中心区域内,灵敏度与背景面积成反比变化。

相似文献

1
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.
4
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.

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Origin and sensitivity of the light peak in the intact cat eye.完整猫眼光峰的起源与敏感性
J Physiol. 1982 Oct;331:653-73. doi: 10.1113/jphysiol.1982.sp014396.

本文引用的文献

1
Tungsten Microelectrode for Recording from Single Units.用于单细胞记录的钨微电极。
Science. 1957 Mar 22;125(3247):549-50. doi: 10.1126/science.125.3247.549.
3
THE SENSITIVITY OF RODS UNDER ILLUMINATION.光照下视杆细胞的敏感性。
J Physiol. 1965 May;178(1):141-60. doi: 10.1113/jphysiol.1965.sp007620.
4
THE SCHEMATIC EYE IN THE CAT.猫的简化眼
Vision Res. 1963 Nov;61:357-81. doi: 10.1016/0042-6989(63)90009-9.
8
Light absorption in the crystalline lens of the cat.猫晶状体中的光吸收。
Nature. 1954 May 29;173(4413):1049-50. doi: 10.1038/1731049a0.
9
Photochemical reactions in the living cat's retina.活体猫视网膜中的光化学反应。
J Physiol. 1953 Nov 28;122(2):322-31. doi: 10.1113/jphysiol.1953.sp005002.

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