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首页> 外文期刊>Journal of Cognitive Neuroscience >Cerebrocerebellar Circuits for the Perceptual Cancellation of Eye-movement-induced Retinal Image Motion
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Cerebrocerebellar Circuits for the Perceptual Cancellation of Eye-movement-induced Retinal Image Motion

机译:小脑电路感知运动引起的视网膜图像运动的知觉抵消

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摘要

Despite smooth pursuit eye movements, we are unaware of resultant retinal image motion. This example of perceptual invariance is achieved by comparing retinal image slip with an internal reference signal predicting the sensory consequences of the eye movement. This prediction can be manipulated experimentally, allowing one to vary the amount of self-induced image motion for which the reference signal compensates and, accordingly, the resulting percept of motion. Here we were able to map regions in CRUS I within the lateral cerebellar hemispheres that exhibited a significant correlation between functional magnetic resonance imaging signal amplitudes and the amount of motion predicted by the reference signal. The fact that these cerebellar regions were found to be functionally coupled with the left parieto-insular cortex and the supplementary eye fields points to these cortical areas as the sites of interaction between predicted and experienced sensory events, ultimately giving rise to the perception of a stable world despite self-induced retinal motion.
机译:尽管眼球运动平稳,但我们并未意识到视网膜图像运动的结果。通过将视网膜图像滑移与预测眼睛运动的感觉结果的内部参考信号进行比较,可以实现此感知不变性的示例。可以通过实验来操纵此预测,从而允许更改参考信号对其进行补偿的自感应图像运动的量,并相应地改变运动的结果。在这里,我们能够绘制小脑外侧半球内CRUS I中的区域,这些区域在功能性磁共振成像信号幅度与参考信号预测的运动量之间显示出显着的相关性。这些小脑区域被发现与左顶顶岛皮层在功能上耦合,而补充眼场则指向这些皮层区域,这是预测的和经历的感觉事件之间相互作用的部位,最终引起了对稳定状态的感知。尽管有自发性视网膜运动。

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