首页> 外文期刊>Frontiers in Systems Neuroscience >Saccade-induced image motion cannot account for post-saccadic enhancement of visual processing in primate MST
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Saccade-induced image motion cannot account for post-saccadic enhancement of visual processing in primate MST

机译:扫视诱发的图像运动不能解释灵长类动物MST的视听后增强过程

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Primates use saccadic eye movements to make gaze changes. In many visual areas, including the dorsal medial superior temporal area (MSTd) of macaques, neural responses to visual stimuli are reduced during saccades but enhanced afterwards. How does this enhancement arise—from an internal mechanism associated with saccade generation or through visual mechanisms activated by the saccade sweeping the image of the visual scene across the retina? Spontaneous activity in MSTd is elevated even after saccades made in darkness, suggesting a central mechanism for post-saccadic enhancement. However, based on the timing of this effect, it may arise from a different mechanism than occurs in normal vision. Like neural responses in MSTd, initial ocular following eye speed is enhanced after saccades, with evidence suggesting both internal and visually mediated mechanisms. Here we recorded from visual neurons in MSTd and measured responses to motion stimuli presented soon after saccades and soon after simulated saccades—saccade-like displacements of the background image during fixation. We found that neural responses in MSTd were enhanced when preceded by real saccades but not when preceded by simulated saccades. Furthermore, we also observed enhancement following real saccades made across a blank screen that generated no motion signal within the recorded neurons' receptive fields. We conclude that in MSTd the mechanism leading to post-saccadic enhancement has internal origins.
机译:灵长类动物利用眼球的跳动来改变视线。在许多视觉区域,包括猕猴的背部内侧颞上区域(MSTd),对视刺激的神经反应在扫视过程中会减少,但随后会增强。这种增强是如何产生的-是由与扫视产生相关的内部机制,还是由扫视激活的视觉机制扫过视网膜上的视觉场景图像?即使在黑暗中进行扫视之后,MSTd中的自发活动也升高,这暗示了眼后增强的主要机制。但是,基于这种影响的时机,它可能是由与正常视觉不同的机制引起的。像MSTd中的神经反应一样,扫视后眼部初始眼速会增强,证据表明内部和视觉介导的机制均如此。在这里,我们从MSTd中的视觉神经元进行了记录,并测量了扫视后和模拟扫视后很快出现的运动刺激的响应,即固定过程中背景图像的像扫视一样的位移。我们发现,MSTd中的神经反应在被真实扫视之前增强,而在模拟扫视之前并未增强。此外,我们还观察到在空白屏幕上进行的真实扫视之后的增强,在记录的神经元的感受野内没有产生运动信号。我们得出结论,在MSTd中导致d后增强的机制有内部起源。

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