Interocular temporal delay sensitivity in the visual cortex of the awake monkey.
نویسندگان
چکیده
Due to the separation of the eyes, temporal retinal disparities are created during binocular stimulation and they have been proposed to be the basis of several stereo-visual effects. This paper studies the sensitivity of cortical neurons from area V1 to interocular temporal delay in the awake monkey (Macaca mulatta). Forty-four cells were included in this study. Temporal delay sensitivity was observed in 59% of them. About half of these temporal-delay-sensitive cells were also sensitive to the stimulation sequence of the eyes. The cells that preferred one eye to be stimulated first were termed asymmetrical (46%); those which were not sensitive to the eye sequence of stimulation were termed symmetrical (54%). No clear differences were observed in the distribution of delay-sensitive cells according to their eye dominance. Fifty-six percent of balanced cells and 65% of unbalanced cells were sensitive to interocular delay. These data underline the importance of temporal cues for depth perception.
منابع مشابه
The effect of interocular delay on disparity - selective V 1 neurons : relationship to stereoacuity and the Pulfrich effect
Szarowicz and Chris Hillman for excellent animal care. Abstract The temporal properties of disparity-sensitive neurons place important temporal constraints on stereo matching. We examined these constraints by measuring the responses of disparity-selective neurons in striate cortex of awake behaving monkeys to random dot stereograms that contained interocular delays. Disparity selectivity was gr...
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The temporal properties of disparity-sensitive neurons place important temporal constraints on stereo matching. We examined these constraints by measuring the responses of disparity-selective neurons in striate cortex of awake behaving monkeys to random-dot stereograms that contained interocular delays. Disparity selectivity was gradually abolished by increasing interocular delay (when the dela...
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Stereoscopic depth processing for static objects depends on retinal disparities between the two eyes and has been shown in previous functional imaging (fMRI) work to involve widely distributed activity in the human visual cortex, including both dorsal and ventral streams. Stereoscopic depth processing of moving objects, on the other hand, can be produced by purely temporal lags between the eyes...
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25 The stereo correspondence problem poses a challenge to visual neurons because localized 26 receptive fields potentially cause false responses. Neurons in the primary visual cortex 27 (V1) partially resolve this problem by combining excitatory and suppressive responses to 28 encode binocular disparity. We explored the time-course of this combination in awake, 29 monkey V1 neurons using subspa...
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ورودعنوان ژورنال:
- The European journal of neuroscience
دوره 11 7 شماره
صفحات -
تاریخ انتشار 1999