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人类视杆和视锥系统中的初始图像与后像辨别

Initial-image and afterimage discrimination in the human rod and cone systems.

作者信息

Geisler W S

出版信息

J Physiol. 1979 Sep;294:165-79. doi: 10.1113/jphysiol.1979.sp012923.

Abstract
  1. The rod-isolation technique of Aguilar & Stiles (1954) was used to obtain scotopic increment-threshold functions in the dark-adapted eye. Increment-threshold functions were obtained for background durations of 50 to 500 msec, but the onset of the background and increment fields was always simultaneous. In all conditions the duration of the increment field was 50 msec. 2. The pattern of results obtained is the same as that reported earlier for the cone system (Geisler, 1978). For background durations greater than that of the increment field, the increment-threshold functions have two distinct branches. It was shown, by measuring action spectra, that both branches reflect the sensitivity of the rod system. 3. When the increment thresholds are plotted as a function of background retinal illuminance, all the lower branches superimpose. This implies that those thresholds are dependent only on the number of background quanta absorbed during presentation of the increment field. On the other hand, when the increment thresholds are plotted as a function of background energy, all the upper branches superimpose, implying that those thresholds are determined by the total number of background quanta absorbed. 4. For the thresholds falling on the lower branches observes reported that the increment field was detected in the initital image of the background and increment fields when they were flashed. For the upper branches, the increment field was detected in a short-term afterimage that appeared after the background was extinguished. The higher the background intensity the longer was the latency until the increment appeared in the afterimage. 5. All of the above findings appear to be consistent with the known properties of the electrical responses of vertebrate photoreceptors. A model based on Penn & Hagins' (1972) model for the photocurrent in rat rods predicts, fairly accurately, the rod and cone increment-threshold results. The parameters estimated by fitting the model support the hypothesis that the short-term rod and cone afterimages are due to the relatively slow decay of internal transmitter, but they suggest that post-receptor mechanisms are responsible for the threshold saturation observed with flashed backgrounds.
摘要
  1. 采用阿吉拉尔和斯泰尔斯(1954年)的视杆隔离技术,在暗适应眼中获得暗视增量阈值函数。针对50至500毫秒的背景持续时间获取了增量阈值函数,但背景和增量场的起始总是同时的。在所有条件下,增量场的持续时间均为50毫秒。2. 所获得的结果模式与先前针对锥系统所报道的相同(盖斯勒,1978年)。对于大于增量场持续时间的背景持续时间,增量阈值函数有两个不同的分支。通过测量作用光谱表明,两个分支均反映了视杆系统的敏感性。3. 当将增量阈值绘制为背景视网膜照度的函数时,所有较低分支会重叠。这意味着这些阈值仅取决于在增量场呈现期间吸收的背景量子数量。另一方面,当将增量阈值绘制为背景能量的函数时,所有较高分支会重叠,这意味着这些阈值由吸收的背景量子总数决定。4. 对于落在较低分支上的阈值,观察者报告称,当背景和增量场闪烁时,在背景和增量场的初始图像中检测到了增量场。对于较高分支,在背景熄灭后出现的短期余像中检测到了增量场。背景强度越高,直到增量出现在余像中的延迟时间就越长。5. 上述所有发现似乎都与脊椎动物光感受器的已知电反应特性一致。基于佩恩和哈金斯(1972年)的大鼠视杆光电流模型的一个模型相当准确地预测了视杆和视锥增量阈值结果。通过拟合模型估计的参数支持这样的假设,即短期视杆和视锥余像是由于内部递质相对缓慢的衰减所致,但它们表明,受体后机制是导致闪光背景下观察到的阈值饱和的原因。

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本文引用的文献

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CONE PIGMENT KINETICS IN THE DEUTERANOPE.绿色盲患者的视锥色素动力学
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CONE PIGMENT KINETICS IN THE PROTANOPE.红色盲患者的视锥色素动力学
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Vision Res. 1966 Dec;6(12):669-82. doi: 10.1016/0042-6989(66)90078-2.
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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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Signals from cones.来自视锥细胞的信号。
J Physiol. 1970 Apr;207(2):463-75. doi: 10.1113/jphysiol.1970.sp009073.
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Rhodopsin kinetics in the human eye.人眼中视紫红质的动力学
J Physiol. 1971 Sep;217(2):447-71. doi: 10.1113/jphysiol.1971.sp009580.
10
Kinetics of the photocurrent of retinal rods.视网膜视杆细胞光电流的动力学
Biophys J. 1972 Aug;12(8):1073-94. doi: 10.1016/S0006-3495(72)86145-9.

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