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光适应中的视杆-视锥细胞相互作用

Rod-cone interaction in light adaptation.

作者信息

Latch M, Lennie P

出版信息

J Physiol. 1977 Aug;269(3):517-34. doi: 10.1113/jphysiol.1977.sp011912.

Abstract
  1. The increment-threshold for a small test spot in the peripheral visual field was measured against backgrounds that were red or blue.2. When the background was a large uniform field, threshold over most of the scotopic range depended exactly upon the background's effect upon rods. This confirms Flamant & Stiles (1948). But when the background was small, threshold was elevated more by a long wave-length than a short wave-length background equated for its effect on rods.3. The influence of cones was explored in a further experiment. The scotopic increment-threshold was established for a short wave-length test spot on a large, short wave-length background. Then a steady red circular patch, conspicuous to cones, but below the increment-threshold for rod vision, was added to the background. When it was small, but not when it was large, this patch substantially raised the threshold for the test.4. When a similar experiment was made using, instead of a red patch, a short wave-length one that was conspicuous in rod vision, threshold varied similarly with patch size. These results support the notion that the influence of small backgrounds arises in some size-selective mechanism that is indifferent to the receptor system in which visual signals originate. Two corollaries of this hypothesis were tested in further experiments.5. A small patch was chosen so as to lift scotopic threshold substantially above its level on a uniform field. This threshold elevation persisted for minutes after extinction of the patch, but only when the patch was small. A large patch made bright enough to elevate threshold by as much as the small one gave rise to no corresponding after-effect.6. Increment-thresholds for a small red test spot, detected through cones, followed the same course whether a large uniform background was long- or short wave-length. When the background was small, threshold upon the short wave-length one began to rise for much lower levels of background illumination, suggesting the influence of rods. This was confirmed by repeating the experiment after a strong bleach when the cones, but not rods, had fully recovered their sensitivity. Increment-thresholds upon small backgrounds of long or short wave-lengths then followed the same course.
摘要
  1. 针对红色或蓝色背景,测量了周边视野中小测试点的增量阈值。

  2. 当背景为大面积均匀场时,在大多数暗视觉范围内,阈值完全取决于背景对视杆细胞的影响。这证实了弗拉芒和斯泰尔斯(1948年)的研究。但当背景较小时,与对视杆细胞影响相同的短波背景相比,长波背景使阈值升高得更多。

  3. 在进一步的实验中探究了视锥细胞的影响。在大面积短波背景上,为短波测试点建立暗视觉增量阈值。然后,将一个对视锥细胞明显但低于视杆视觉增量阈值的稳定红色圆形斑块添加到背景中。当它较小时,会显著提高测试的阈值,但当它较大时则不会。

  4. 当使用在视杆视觉中明显的短波斑块而非红色斑块进行类似实验时,阈值随斑块大小的变化方式类似。这些结果支持这样一种观点,即小背景的影响源自某种大小选择性机制,该机制对视信号起源的感受器系统不敏感。在进一步的实验中对这一假设的两个推论进行了测试。

  5. 选择一个小斑块,使其将暗视觉阈值大幅提高到高于均匀场时的水平。在斑块消失后,这种阈值升高持续了数分钟,但仅在斑块较小时如此。一个足够亮以将阈值提高到与小斑块相同程度的大斑块不会产生相应的后效应。

  6. 通过视锥细胞检测到的小红测试点的增量阈值,无论大面积均匀背景是长波还是短波,都遵循相同的变化过程。当背景较小时,在短波背景上,阈值在背景光照水平低得多时就开始上升,这表明视杆细胞的影响。在强烈漂白后,视锥细胞而非视杆细胞完全恢复其敏感性时重复该实验,证实了这一点。然后,在长波或短波小背景上的增量阈值遵循相同的变化过程。

相似文献

1
Rod-cone interaction in light adaptation.光适应中的视杆-视锥细胞相互作用
J Physiol. 1977 Aug;269(3):517-34. doi: 10.1113/jphysiol.1977.sp011912.
3
The cone threshold: spatial interactions of rod and cone adapting signals.
Vision Res. 1983;23(7):713-22. doi: 10.1016/0042-6989(83)90213-4.
4
Background configuration and rod threshold.背景配置和棒阈值。
J Physiol. 1973 Aug;233(1):143-56. doi: 10.1113/jphysiol.1973.sp010302.
6
The field adaptation of the human rod visual system.人类视杆视觉系统的场适应
J Physiol. 1992 Jan;445:319-43. doi: 10.1113/jphysiol.1992.sp018926.
7
After-effects of small adapting fields.小适应场的后效应
J Physiol. 1979 Nov;296:141-58. doi: 10.1113/jphysiol.1979.sp012996.

引用本文的文献

8
The field adaptation of the human rod visual system.人类视杆视觉系统的场适应
J Physiol. 1992 Jan;445:319-43. doi: 10.1113/jphysiol.1992.sp018926.
9
After-effects of small adapting fields.小适应场的后效应
J Physiol. 1979 Nov;296:141-58. doi: 10.1113/jphysiol.1979.sp012996.
10

本文引用的文献

2
VISUAL ADAPTATION.视觉适应。
Proc R Soc Lond B Biol Sci. 1965 Mar 16;162:20-46. doi: 10.1098/rspb.1965.0024.
3
Nervous mechanisms and dark-adaptation.神经机制与暗适应。
J Physiol. 1954 Sep 28;125(3):417-26. doi: 10.1113/jphysiol.1954.sp005169.
8
The size of rod signals.视杆信号的大小。
J Physiol. 1970 Jan;206(1):193-208. doi: 10.1113/jphysiol.1970.sp009006.
10
Spatial-frequency channels in human vision.人类视觉中的空间频率通道。
J Opt Soc Am. 1971 Sep;61(9):1176-86. doi: 10.1364/josa.61.001176.

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