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J Physiol. 1979 Feb;287:93-106. doi: 10.1113/jphysiol.1979.sp012648.
2
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3
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Magnetophosphenes: a quantitative analysis of thresholds.磁光幻视:阈值的定量分析
Med Biol Eng Comput. 1980 May;18(3):326-34. doi: 10.1007/BF02443387.
5
Dark-adaptation in frog rods: changes in the stimulus-response function.青蛙视杆细胞的暗适应:刺激-反应函数的变化
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本文引用的文献

1
NEURAL AND PHOTOCHEMICAL MECHANISMS OF VISUAL ADAPTATION IN THE RAT.大鼠视觉适应的神经和光化学机制
J Gen Physiol. 1963 Jul;46(6):1287-301. doi: 10.1085/jgp.46.6.1287.
2
The effect of a coloured adapting field on the spectral sensitivity of frog retinal elements.有色适应场对青蛙视网膜元件光谱敏感性的影响。
J Physiol. 1959 Dec;149(2):318-26. doi: 10.1113/jphysiol.1959.sp006342.
3
Rhodopsin measurement and dark-adaptation in a subject deficient in cone vision.在一名缺乏视锥细胞视觉的受试者中进行视紫红质测量和暗适应。
J Physiol. 1961 Apr;156(1):193-205. doi: 10.1113/jphysiol.1961.sp006668.
4
The dark-adaptation of single units in the frog's retina and its relation to the regeneration of rhodopsin.青蛙视网膜单个神经元的暗适应及其与视紫红质再生的关系。
Vision Res. 1965 Dec;5(11):615-32. doi: 10.1016/0042-6989(65)90035-0.
5
The photoproducts of rhodopsin in the isolated retina of the frog.青蛙离体视网膜中视紫红质的光产物。
Vision Res. 1969 Jul;9(7):815-47. doi: 10.1016/0042-6989(69)90017-0.
6
Visual adaptation of the rhodopsin rods in the frogs retina.青蛙视网膜中视紫红质视杆细胞的视觉适应。
J Physiol. 1968 Nov;199(1):59-87. doi: 10.1113/jphysiol.1968.sp008639.
7
Dark-adaptation processes in the rhodopsin rods of the frog's retina.青蛙视网膜视紫红质视杆细胞中的暗适应过程。
Vision Res. 1967 Jan;7(1):17-41. doi: 10.1016/0042-6989(67)90023-5.
8
Properties of "neural" adaptation in components of the frog electroretinogram.青蛙视网膜电图各成分中“神经”适应的特性
Vision Res. 1971 Oct;11(10):1113-23. doi: 10.1016/0042-6989(71)90115-5.
9
The early phase of dark adaptation.
Vision Res. 1972 Jun;12(6):1083-93. doi: 10.1016/0042-6989(72)90099-5.
10
Adaptation in retinal rods of axolotl: intracellular recordings.美西螈视网膜视杆细胞的适应性:细胞内记录
Science. 1972 Jun 16;176(4040):1240-3. doi: 10.1126/science.176.4040.1240.

青蛙视网膜天冬氨酸分离视杆细胞感受器电位的暗适应:阈值测量

Dark-adaptation of the aspartate-isolated rod receptor potential of the frog retina: threshold measurements.

作者信息

Donner K O, Hemilä S O

出版信息

J Physiol. 1979 Feb;287:93-106. doi: 10.1113/jphysiol.1979.sp012648.

DOI:10.1113/jphysiol.1979.sp012648
PMID:311829
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1281484/
Abstract
  1. The dark-adaptation of the aspartate-isolated rod receptor potential of the isolated and perfused frog retina has been measured after bleaching about 5-10% of the rhodopsin. The fraction bleached (DeltaR) and the decay of rhodopsin photoproducts were determined using alternating measurements with a photometric technique (Donner & Hemilä, 1975).2. The dark-adaptation time course of the log threshold elevation is exponential, log I(t)/I(0) = W exp (-t/tau)+P, where W is the extrapolated value for log I(t)/I(0)-P at t = 0 and P is log I(t)/I(0) for t = infinity. When DeltaR increases from 2 to 10% W increases from ca. 2.6 to ca. 5. The time constant tau is about 13 min at 9 degrees C and 7 min at 14 degrees C (DeltaR = 5-10%).3. When the bleaching period is extended, keeping the amount bleached (Ixt) constant, dark-adaptation is completed earlier.4. The time course of dark-adaptation and the decay of the photoproduct ;retinal' are similar, as is also their dependence on temperature (Q(10) approximately 3).5. The permanent log threshold rise P is approximately proportional to DeltaR after small bleaches; when more than about 10% is bleached the slope of the curve P(DeltaR) decreases. P is considerably larger (about 2.5-fold) for the same fraction bleached in experiments at 14 degrees C as compared to experiments at 9 degrees C.6. A comparison with previously obtained corresponding values for dark-adaptation after small bleaches at the ganglion cell level shows a close agreement between the time constants for the dark-adaptation curve, its range and the dependence of threshold on the fraction of rhodopsin bleached.
摘要
  1. 在漂白约5%-10%的视紫红质后,测量了分离并灌注的蛙视网膜中天冬氨酸分离的视杆细胞感受器电位的暗适应。使用光度技术交替测量来确定漂白部分(ΔR)和视紫红质光产物的衰减(唐纳&赫米拉,1975年)。

  2. 对数阈值升高的暗适应时间进程是指数形式的,log I(t)/I(0) = W exp (-t/τ)+P,其中W是t = 0时log I(t)/I(0)-P的外推值,P是t = ∞时的log I(t)/I(0)。当ΔR从2%增加到10%时,W从约2.6增加到约5。时间常数τ在9℃时约为13分钟,在14℃时约为7分钟(ΔR = 5%-10%)。

  3. 当漂白期延长,同时保持漂白量(Ixt)不变时,暗适应完成得更早。

  4. 暗适应的时间进程和光产物“视网膜”的衰减相似,它们对温度的依赖性也相似(Q10约为3)。

  5. 小剂量漂白后,永久性对数阈值升高P与ΔR大致成比例;当漂白超过约10%时,曲线P(ΔR)的斜率减小。与9℃实验相比,在14℃实验中相同漂白部分的P要大得多(约2.5倍)。

  6. 与之前在神经节细胞水平小剂量漂白后获得的相应暗适应值进行比较,结果表明暗适应曲线的时间常数、其范围以及阈值对视紫红质漂白部分的依赖性之间存在密切一致性。