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Single units and conscious vision

机译:单一单位和有意识的视野

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Figures that can be seen in more than one way are invaluable tools for the study of the neural basis of visual awareness, because such stimuli permit the dissociation of the neural responses that underlie what we perceive at any given time from those forming the sensory representation of a visual pattern. To study the former type of responses, monkeys were subjected to binocular rivalry and the response of neurons in a number of different visual areas was studied while the animals reported their alternating percepts by pulling levers. Perception-related modulations of neural activity were found to occur to different extents in different cortical visual areas. The cells that were affected by suppression were almost exclusively binocular, and their proportion was found to increase in the higher processing stages of the visual system. The strongest correlations between neural activity and perception were observed in the visual areas of the temporal lobe. A strikingly large number of neurons in the early visual areas remained active during the perceptual suppression of the stimulus, a finding suggesting that conscious visual perception might be mediated by only a subset of the cells exhibiting stimulus selective responses. These physiological findings, together with a number of recent psychophysical studies, offer a new explanation of the phenomenon of binocular rivalry. Indeed, rivalry has long been considered to be closely linked with binocular fusion and stereopsis, and the sequences of dominance and suppression have been viewed as the result of competition between the two monocular channels. The physiological data presented here are incompatible with this interpretation. Rather than reflecting interocular competition, the rivalry is most probably between the two different central neural representations generated by the dichoptically presented stimuli. The mechanisms of rivalry are probably the same as, or very similar to, those underlying multistable perception in general, and further physiological studies might reveal much about the neural mechanisms of our perceptual organization. [References: 170]
机译:可以通过多种方式看到的数字是研究视觉意识的神经基础的宝贵工具,因为这种刺激可以使构成我们在任何给定时间所感知的基础的神经反应与构成感觉觉表征的神经反应分离。视觉图案。为了研究前者的反应类型,对猴子进行了双眼对抗,并研究了许多不同视域中神经元的反应,同时动物通过拉杆报告了它们的交替感知。发现与知觉相关的神经活动调节在不同的皮层视觉区域以不同程度发生。受抑制影响的细胞几乎完全是双眼的,并且它们的比例在视觉系统的较高处理阶段会增加。在颞叶的视觉区域观察到神经活动和知觉之间最强的相关性。在视觉上抑制刺激期间,早期视觉区域中的大量神经元仍保持活跃,这一发现表明有意识的视觉感知可能仅由表现出刺激选择性反应的一部分细胞介导。这些生理发现以及最近的许多心理物理学研究为双眼竞争现象提供了新的解释。的确,长期以来,竞争一直被认为与双眼融合和立体视密切相关,并且主导和抑制的顺序被视为两个单眼通道之间竞争的结果。此处提供的生理数据与此解释不符。竞争不是反映眼间竞争,而是最有可能在二分法呈现的刺激所产生的两种不同的中枢神经表示之间。竞争的机制可能与基本的多稳态感知机制相同或非常相似,并且进一步的生理研究可能会揭示我们感知组织的神经机制。 [参考:170]

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