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Binocular Neurons in V1 of Awake Monkeys Are Selective for Absolute Not Relative Disparity

机译:清醒猴子V1中的双眼神经元对绝对差异(而非相对差异)具有选择性

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摘要

Most neurophysiological accounts of disparity selectivity in neurons of the primary visual cortex (V1) imply that they are selective for absolute retinal disparities. By contrast, a number of psychophysical observations indicate that relative disparities play a more important role in depth perception. During recordings from disparity selective neurons in area V1 of awake behaving monkeys, we used a disparity feedback loop () to add controlled amounts of absolute disparity to a display containing both absolute and relative disparities. This manipulation changed the absolute disparity of all the visible features in the display but left unchanged the relative disparities signalled by these features. The addition of absolute disparities produced clear changes in the neural responses to unchanged external stimuli, which were well predicted by the measured change in absolute disparity: in 45/53 cases, the neuron maintained a consistent firing pattern with respect to absolute disparity so that the manipulation created no significant change in the absolute disparity preferred by the neuron. No neuron in V1 maintained a consistent relationship with relative disparity. We conclude that the relative disparity signals used in primate depth perception are constructed outside area V1.
机译:大多数在视神经皮层(V1)的神经元中存在视差选择性的神经生理学研究表明,它们对绝对视网膜视差具有选择性。相比之下,许多心理物理学观察表明,相对差异在深度感知中起着更为重要的作用。在记录清醒行为的猴子V1区的视差选择性神经元的过程中,我们使用视差反馈环()向包含绝对和相对视差的显示器中添加受控量的绝对视差。该操作改变了显示器中所有可见特征的绝对视差,但是未改变这些特征所传达的相对视差。绝对差异的增加使对不变的外部刺激的神经反应发生明显变化,这可以通过所测得的绝对差异来很好地预测:在45/53例中,神经元在绝对差异方面保持一致的放电模式,因此操纵不会对神经元偏爱的绝对差异产生显着影响。 V1中没有神经元与相对差异保持一致的关系。我们得出结论,用于灵长类动物深度感知的相对视差信号是在区域V1外部构造的。

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