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龟视锥细胞早期感受器电位的细胞内记录

Internal recording of the early receptor potential in turtle cones.

作者信息

Hodgkin A L, Obryan P M

出版信息

J Physiol. 1977 Jun;267(3):737-66. doi: 10.1113/jphysiol.1977.sp011836.

Abstract
  1. Early receptor potentials (E.R.P.s) were recorded with internal electrodes in turtle cones by applying brief flashes from a xenon tube with a maximum photon density equivalent to 2-3 x 10(8) photons micronm-2 at the optimum wave-length. 2. The E.R.P. was separated from the late receptor potential (L.R.P.) by superposing in flash on a step of light which was strong enough to saturate the L.R.P. 3. In red-sensitive cones the E.R.P. consisted of a brief depolarizing phase (R1) followed by a hyperpolarizing phase (R2) of maximum amplitude 10 mV and duration 30-40 msec. R1 was small or absent in green-sensitive cones. 4. With flashes of increasing intensity the E.R.P. approached its maximum exponentially with an exponential constant Q of about 10(8) photons micronm-2 which is of the same order as the reciprocal of the photosensitivity of porphyropsin; the implication of this result, which is considered in the theoretical section, is the the E.R.P. is proportional to the number of photoisomerizations. 5. When tested with a constant xenon flash at varying times after the beginning of a bleaching light the E.R.P. declined exponentially with a similar value of Q. 6. After prolonged bleaches the E.R.P. recovered with a time constant of about 100 sec but much quicker recoveries were observed after relatively brief bleaches. 7. The form and size of the E.R.P. are consistent with the accepted view that it arises from a redistribution of charge in the cone pigment molecule. 8. The effect of a single photoisomerization in an isolated cone was estimated as about 10(-10) V or one electronic charge through about 10% of the membrane.
摘要
  1. 通过在最佳波长处施加来自氙管的短暂闪光,其最大光子密度相当于2 - 3×10⁸光子μm⁻²,用内部电极在龟的视锥细胞中记录早期感受器电位(E.R.P.s)。2. 通过在足以使晚期感受器电位(L.R.P.)饱和的光阶跃上叠加闪光,将E.R.P.与L.R.P.分离。3. 在红敏视锥细胞中,E.R.P.由一个短暂的去极化阶段(R1)和随后的超极化阶段(R2)组成,R2的最大振幅为10 mV,持续时间为30 - 40毫秒。在绿敏视锥细胞中,R1很小或不存在。4. 随着闪光强度的增加,E.R.P.以指数形式接近其最大值,指数常数Q约为10⁸光子μm⁻²,这与视紫质光敏性的倒数处于同一数量级;该结果的含义(在理论部分进行了讨论)是E.R.P.与光异构化的数量成正比。5. 当在漂白光开始后的不同时间用恒定的氙闪光进行测试时,E.R.P.以类似的Q值呈指数下降。6. 长时间漂白后,E.R.P.以约100秒的时间常数恢复,但在相对短暂的漂白后观察到恢复速度要快得多。7. E.R.P.的形式和大小与公认的观点一致,即它源于视锥色素分子中电荷的重新分布。8. 估计单个光异构化在单个视锥细胞中的效应约为10⁻¹⁰ V或一个电子电荷通过约10%的膜。

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Bleaching and regeneration of cone pigments in man.人类视锥色素的漂白与再生
Vision Res. 1968 Jun;8(6):617-31. doi: 10.1016/0042-6989(68)90040-0.
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Kinetic measurements on rhodopsin solutions during intense flashes.
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Receptive fields of cones in the retina of the turtle.海龟视网膜中视锥细胞的感受野。
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