Clack J W, Pepperberg D R
J Gen Physiol. 1982 Dec;80(6):863-83. doi: 10.1085/jgp.80.6.863.
Through extracellular measurements of photoreceptor responses to flashed stimuli, we examined how the bleaching of rhodopsin affects increment receptor threshold in the isolated retina of the skate (Raja oscellata and R. erinacea). Both initially unbleached and previously bleached photoreceptors, when exposed to full-field luminous backgrounds of fixed intensity, attain approximately stable levels of increment threshold that vary with the intensity of the background light. Values of stabilized increment thresholds measured after various extents of bleaching (less than approximately 50%), when plotted against background intensity in log-log coordinates, tend to converge with increasing intensity of the background; this relationship of the increment threshold functions resembles that which Blakemore and Rushton (1965b) found to describe the transient effect of bleaching on psychophysical increment threshold for the human rod mechanism. Our data are consistent with the possibility that related photochemical processes govern the stabilized levels of receptor sensitivity exhibited by the isolated retina (a) during steady illumination and (b) long after substantial bleaching.
通过对光感受器对闪光刺激的细胞外反应进行测量,我们研究了视紫红质的漂白如何影响鳐鱼(Raja oscellata和R. erinacea)离体视网膜中的增量感受器阈值。当初始未漂白和先前已漂白的光感受器暴露于固定强度的全视野发光背景时,它们会达到近似稳定的增量阈值水平,该水平随背景光强度而变化。在不同程度的漂白(小于约50%)后测量的稳定增量阈值的值,当以对数-对数坐标绘制背景强度时,随着背景强度的增加趋于收敛;增量阈值函数的这种关系类似于Blakemore和Rushton(1965b)发现的描述漂白对人类视杆机制心理物理学增量阈值的瞬态效应的关系。我们的数据与以下可能性一致:相关的光化学过程控制着离体视网膜在(a)稳定光照期间和(b)大量漂白后很长时间所表现出的感受器敏感性稳定水平。