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鲎腹神经感光器中的光诱发和自发离散波。

Light-evoked and spontaneous discrete waves in the ventral nerve photoreceptor of Limulus.

作者信息

Yeandle S, Spiegler J B

出版信息

J Gen Physiol. 1973 May;61(5):552-71. doi: 10.1085/jgp.61.5.552.

Abstract

Discrete waves, recorded from the ventral nerve photoreceptor, occur in the light and in the dark. Spontaneous waves, on the average, are smaller than light-evoked waves. This suggests that not all spontaneous waves can arise from spontaneous changes in the visual pigment molecule identical to changes induced by photon absorption. Spontaneous and light-evoked waves are statistically independent of each other. This is shown by determination of frequency of response as a function of pulse energy for short pulses and determination of the distribution of intervals between waves evoked by steady lights. The available data can be explained by two models. In the first each photon produces a time-dependent excitation that goes to zero the instant the wave occurs so that the number of effective absorptions from a short light pulse equals the number of waves produced by the light pulse. In the second the excitation produced by photon absorption is unaffected by the occurrence of the waves so that the number of waves produced from a short light pulse may be different from the number of effective absorptions. Present results do not allow a choice between the two models.

摘要

从腹侧神经光感受器记录到的离散波,在明和暗中均会出现。平均而言,自发波比光诱发波小。这表明并非所有自发波都源自与光子吸收所诱导的变化相同的视觉色素分子的自发变化。自发波和光诱发波在统计学上相互独立。这通过测定短脉冲的响应频率作为脉冲能量的函数,以及测定稳定光诱发的波之间的间隔分布得以证明。现有数据可用两种模型来解释。在第一种模型中,每个光子产生一个随时间变化的激发,该激发在波出现的瞬间变为零,因此短光脉冲的有效吸收数量等于光脉冲产生的波的数量。在第二种模型中,光子吸收产生的激发不受波出现的影响,因此短光脉冲产生的波的数量可能不同于有效吸收的数量。目前的结果无法在这两种模型之间做出选择。

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