Raggenbass M
J Physiol. 1983 Nov;344:525-48. doi: 10.1113/jphysiol.1983.sp014955.
Light responses in honey bee drone photoreceptors were recorded with intracellular micro-electrodes in superfused slices of retina. The effects of changes in extracellular calcium on the size and the shape of the response to dim light were studied and compared with the effects of light adaptation. Dim light stimuli were used so that the amplitude of the response was linearly related to the number of the photons absorbed, the effects of voltage-dependent mechanisms were negligible and no detectable light adaptation was produced by the stimulus. Lowering the extracellular calcium concentration increased the amplitude and the duration of the response. Raising the extracellular calcium concentration produced the opposite effects. Changing the extracellular calcium concentration modified the response without altering either the linearity of the intensity--response relation or the resting membrane potential in the dark. Light adaptation decreased the amplitude and the duration of the response in a manner that could be quantitatively simulated, in the same photoreceptors, by an increase in the extracellular calcium concentration. Changing the extracellular calcium concentration, or light-adapting the preparation, modified the response without altering its early depolarizing phase. Lowering external calcium either did not affect, or slightly increased, the maximum rate of the light-induced depolarization; raising external calcium, or light-adapting the preparation, either did not affect, or slightly decreased, the maximum rate of the light-induced depolarization. The experimental data can be quantitatively described by a mathematical model with the basic assumption that calcium acts in the process of light adaptation by decreasing the mean open time of the light-activated channels.
在视网膜灌流切片中,用细胞内微电极记录了蜜蜂雄蜂光感受器的光反应。研究了细胞外钙变化对弱光反应大小和形状的影响,并与光适应的影响进行了比较。使用弱光刺激,使反应幅度与吸收的光子数呈线性关系,电压依赖性机制的影响可忽略不计,且刺激不会产生可检测到的光适应。降低细胞外钙浓度会增加反应的幅度和持续时间。提高细胞外钙浓度则产生相反的效果。改变细胞外钙浓度会改变反应,但不会改变强度-反应关系的线性或暗处的静息膜电位。光适应会降低反应的幅度和持续时间,在相同的光感受器中,细胞外钙浓度的增加可以定量模拟这种方式。改变细胞外钙浓度或对标本进行光适应,会改变反应,但不会改变其早期去极化阶段。降低细胞外钙要么不影响,要么略微增加光诱导去极化的最大速率;提高细胞外钙浓度或对标本进行光适应,要么不影响,要么略微降低光诱导去极化的最大速率。实验数据可以用一个数学模型进行定量描述,其基本假设是钙在光适应过程中通过减少光激活通道的平均开放时间起作用。