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暗视觉增量与减量的处理。

Processing of scotopic increments and decrements.

作者信息

Purkiss T J, Hughes A, DeMarco P J

机构信息

Department of Psychological and Brain Sciences, University of Louisville, KY 40292, USA.

出版信息

Vis Neurosci. 2001 Jan-Feb;18(1):119-25. doi: 10.1017/s0952523801181113.

Abstract

Rod and cone photoreceptors send their signals to ON- and OFF-retinal ganglion cells through different pathways in the primate retina. We hypothesized that increments and decrements of light may be processed differently by the rod-bipolar pathway because of the funneling of the rod signal through the rod bipolar cell. We tested this hypothesis using a psychophysical adaptation paradigm, which has provided evidence that photopic increments and decrements of light are processed by ON- and OFF-pathways in the human visual system. We had observers adapt to either a rapid-on or rapid-off sawtooth waveform, under both photopic and scotopic conditions. We then measured detection thresholds for one cycle of a rapid-on or rapid-off sawtooth stimulus. For photopic stimuli, sawtooth adaptation asymmetrically raised thresholds for test stimuli in a manner that depended on the polarity of the adaptation stimulus. For scotopic stimuli, thresholds were raised, but no significant selective adaptation effect was found. By repeating the photopic condition with sawtooth stimuli which had been filtered using an impulse response function derived for the rod system, we demonstrated that the lack of selective adaptation was not a consequence of the sluggish temporal response of the rod-bipolar pathway. We conclude instead that the reduced effectiveness of sawtooth adaptation is due to channeling of rod photoreceptor signals through the rod bipolar cell before reaching ON- and OFF-ganglion cells.

摘要

在灵长类动物视网膜中,视杆和视锥光感受器通过不同途径将信号发送至ON型和OFF型视网膜神经节细胞。我们推测,由于视杆信号通过视杆双极细胞进行汇聚,视杆双极通路可能对光的增加和减少进行不同的处理。我们使用一种心理物理学适应范式来检验这一假设,该范式已提供证据表明,人类视觉系统中光的明视觉增加和减少是由ON型和OFF型通路处理的。我们让观察者在明视觉和暗视觉条件下,适应快速上升或快速下降的锯齿波形。然后,我们测量了快速上升或快速下降锯齿刺激一个周期的检测阈值。对于明视觉刺激,锯齿适应以一种取决于适应刺激极性的方式不对称地提高了测试刺激的阈值。对于暗视觉刺激,阈值有所提高,但未发现明显的选择性适应效应。通过使用为视杆系统推导的脉冲响应函数对锯齿刺激进行滤波,重复明视觉条件,我们证明缺乏选择性适应并非视杆双极通路时间响应迟缓的结果。相反,我们得出结论,锯齿适应效果降低是由于视杆光感受器信号在到达ON型和OFF型神经节细胞之前通过视杆双极细胞进行了传导。

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