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- W4295763140 endingPage "142" @default.
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- W4295763140 abstract "Distinguishing sensory stimuli caused by changes in the environment from those caused by an animal's own actions is a hallmark of sensory processing1. Saccades are rapid eye movements that shift the image on the retina. How visual systems differentiate motion of the image induced by saccades from actual motion in the environment is not fully understood2. Here we discovered that in mouse primary visual cortex (V1) the two types of motion evoke distinct activity patterns. This is because, during saccades, V1 combines the visual input with a strong non-visual input arriving from the thalamic pulvinar nucleus. The non-visual input triggers responses that are specific to the direction of the saccade and the visual input triggers responses that are specific to the direction of the shift of the stimulus on the retina, yet the preferred directions of these two responses are uncorrelated. Thus, the pulvinar input ensures differential V1 responses to external and self-generated motion. Integration of external sensory information with information about body movement may be a general mechanism for sensory cortices to distinguish between self-generated and external stimuli." @default.
- W4295763140 created "2022-09-15" @default.
- W4295763140 creator A5045454459 @default.
- W4295763140 creator A5061050035 @default.
- W4295763140 date "2022-09-14" @default.
- W4295763140 modified "2023-10-04" @default.
- W4295763140 title "Distinguishing externally from saccade-induced motion in visual cortex" @default.
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- W4295763140 doi "https://doi.org/10.1038/s41586-022-05196-w" @default.
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