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The kinetics of visual pigment systems. I. Mathematical analysis.

作者信息

Hochstein S, Minke B, Hillman P, Knight B W

出版信息

Biol Cybern. 1978 Jul 14;30(1):23-32. doi: 10.1007/BF00365480.

DOI:10.1007/BF00365480
PMID:687687
Abstract
摘要

相似文献

1
The kinetics of visual pigment systems. I. Mathematical analysis.
Biol Cybern. 1978 Jul 14;30(1):23-32. doi: 10.1007/BF00365480.
2
Bleaching of visual pigment in steady illumination. A model and a derivation of empirical parameters.
Biol Cybern. 1975 Sep 1;19(3):127-30. doi: 10.1007/BF00337251.
3
Transduction in invertebrate photoreceptors: role of pigment bistability.无脊椎动物光感受器中的转导:色素双稳态的作用。
Physiol Rev. 1983 Apr;63(2):668-772. doi: 10.1152/physrev.1983.63.2.668.
4
The kinetics of visual pigment systems. II. Application to measurements on a bistable pigment system.
Biol Cybern. 1978 Jul 14;30(1):33-43. doi: 10.1007/BF00365481.
5
[Recent trends in studies of the functions of visual pigments and visual cells].
Nihon Seirigaku Zasshi. 1972 Feb;34(2):53-70.
6
Raman microscope and quantum yield studies on the primary photochemistry of A2-visual pigments.拉曼显微镜与A2-视觉色素初级光化学的量子产率研究
Biophys J. 1987 Oct;52(4):603-10. doi: 10.1016/S0006-3495(87)83250-2.
7
Isorhodopsin II: artificial photosensitive pigment formed from 9,13-dicis retinal.异视紫红质II:由9,13 - 二顺式视黄醛形成的人工合成光敏色素。
Proc Natl Acad Sci U S A. 1975 Apr;72(4):1538-42. doi: 10.1073/pnas.72.4.1538.
8
The visual process: photophysics and photoisomerization of model visual pigments and the primary reaction.
Photochem Photobiol. 1988 Sep;48(3):369-99. doi: 10.1111/j.1751-1097.1988.tb02836.x.
9
[Photochemistry of rhodopsin--picosecond-microsecond time domain].
Tanpakushitsu Kakusan Koso. 1985 Sep(28):56-63.
10
[Fluorescence of rhodopsins and its relation to primary processes of light energy transformation].[视紫红质的荧光及其与光能转换初级过程的关系]
Biofizika. 1987 May-Jun;32(3):540-55.

引用本文的文献

1
Transduction in photoreceptors: determination of the pigment transition or state coupled to excitation.光感受器中的转导:与激发相关的色素转变或状态的测定。
Biophys Struct Mech. 1979;5(2-3):249-53. doi: 10.1007/BF00535454.
2
Upper limit on translational diffusion of visual pigment in intact unfixed barnacle photoreceptors.完整未固定藤壶光感受器中视觉色素平移扩散的上限
Biophys Struct Mech. 1979;5(2-3):243-8. doi: 10.1007/BF00535453.
3
Photopigment and receptor properties in Drosophila compound eye and ocellar receptors.果蝇复眼和单眼感受器中的光色素及感受器特性。

本文引用的文献

1
ISOLATION AND IDENTIFICATION OF THE INITIAL PEAK OF THE EARLY RECEPTOR POTENTIAL.早期感受器电位初始峰的分离与鉴定
Nature. 1964 Nov 28;204:836-8. doi: 10.1038/204836a0.
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EARLY RECEPTOR POTENTIAL OF THE VERTEBRATE RETINA.脊椎动物视网膜的早期感受器电位
Nature. 1964 Nov 21;204:736-9. doi: 10.1038/204736a0.
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Photoelectric potential from photoreceptor cells in ventral eye of Limulus.鲎腹眼感光细胞产生的光电位。
Biophys Struct Mech. 1979;5(2-3):197-209. doi: 10.1007/BF00535448.
4
Rapid photopigment conversions in blowfly visual sense cells consequences for receptor potential and pupillary response.家蝇视觉感受细胞中光色素的快速转换对感受器电位和瞳孔反应的影响
Biophys Struct Mech. 1979;5(2-3):187-96. doi: 10.1007/BF00535447.
5
On the implications of bistability of visual pigment systems.关于视觉色素系统双稳性的影响
Biophys Struct Mech. 1979;5(2-3):129-36. doi: 10.1007/BF00535443.
6
The function of photostable pigments in fly photoreceptors.光稳定色素在果蝇光感受器中的功能。
Biophys Struct Mech. 1979;5(2-3):117-28. doi: 10.1007/BF00535442.
7
On visual pigment templates and the spectral shape of invertebrate rhodopsins and metarhodopsins.关于视觉色素模板和无脊椎动物视紫红质和变视紫红质的光谱形状。
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2010 Nov;196(11):869-78. doi: 10.1007/s00359-010-0568-7. Epub 2010 Aug 20.
8
Heterogenic components of a fast electrical potential in Drosophila compound eye and their relation to visual pigment photoconversion.果蝇复眼中快速电位的异质成分及其与视觉色素光转换的关系。
J Gen Physiol. 1980 Apr;75(4):353-79. doi: 10.1085/jgp.75.4.353.
9
Fluorescence of crayfish metarhodopsin studied in single rhabdoms.在单个视杆中研究小龙虾变视紫红质的荧光。
Biophys J. 1981 Sep;35(3):653-64. doi: 10.1016/S0006-3495(81)84818-7.
10
Photosensitivity spectrum of crayfish rhodopsin measured using fluorescence of metarhodopsin.使用变视紫红质荧光测量小龙虾视紫红质的光敏光谱。
J Gen Physiol. 1982 Feb;79(2):313-32. doi: 10.1085/jgp.79.2.313.
Science. 1967 Nov 3;158(3801):665-6. doi: 10.1126/science.158.3801.665.
4
Early receptor potentials of rods and cones in rodents.啮齿动物视杆和视锥细胞的早期感受器电位
J Gen Physiol. 1966 Jul;49(6):1199-208. doi: 10.1085/jgp.0491199.
5
A hyperpolarizing component of the receptor potential in the median ocellus of Limulus.鲎中眼感受器电位的超极化成分。
Science. 1968 Nov 8;162(3854):677-9. doi: 10.1126/science.162.3854.677.
6
Early receptor potential of the isolated frog (Rana pipiens) retina.离体蛙(豹蛙)视网膜的早期感受器电位
Vision Res. 1967 Nov;7(11):837-45. doi: 10.1016/0042-6989(67)90004-1.
7
Action spectrum of the human early receptor potential.人类早期感受器电位的作用光谱
Nature. 1970 Jan 3;225(5227):88-9. doi: 10.1038/225088a0.
8
Electrical signs of information flow in photoreceptors.光感受器中信息流的电信号
Cold Spring Harb Symp Quant Biol. 1965;30:403-18. doi: 10.1101/sqb.1965.030.01.040.
9
Ultraviolet-induced sensitivity to visible light in ultraviolet receptors of Limulus.鲎紫外线感受器中紫外线诱导的对可见光的敏感性。
J Gen Physiol. 1972 Feb;59(2):186-200. doi: 10.1085/jgp.59.2.186.
10
Electrophysiological properties of cells in the median ocellus of Limulus.鲎中眼细胞的电生理特性
J Gen Physiol. 1972 Feb;59(2):167-85. doi: 10.1085/jgp.59.2.167.