A thalamic hub-and-spoke network enables visual perception during action by coordinating visuomotor dynamics

IF 20 1区 医学 Q1 NEUROSCIENCES Nature neuroscience Pub Date : 2025-02-10 DOI:10.1038/s41593-025-01874-w
Tomas Vega-Zuniga, Anton Sumser, Olga Symonova, Peter Koppensteiner, Florian H. Schmidt, Maximilian Joesch
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Abstract

For accurate perception and motor control, an animal must distinguish between sensory experiences elicited by external stimuli and those elicited by its own actions. The diversity of behaviors and their complex influences on the senses make this distinction challenging. Here, we uncover an action–cue hub that coordinates motor commands with visual processing in the brain’s first visual relay. We show that the ventral lateral geniculate nucleus (vLGN) acts as a corollary discharge center, integrating visual translational optic flow signals with motor copies from saccades, locomotion and pupil dynamics. The vLGN relays these signals to correct action-specific visual distortions and to refine perception, as shown for the superior colliculus and in a depth-estimation task. Simultaneously, brain-wide vLGN projections drive corrective actions necessary for accurate visuomotor control. Our results reveal an extended corollary discharge architecture that refines early visual transformations and coordinates actions via a distributed hub-and-spoke network to enable visual perception during action. Animals must distinguish between signals from sensory stimuli and action-generated signals. This paper shows that the ventral lateral geniculate nucleus acts as a corollary discharge center to suppress motion-induced visual signals, orchestrating accurate perception and motor control.

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丘脑轮辐网络通过协调视觉运动动力学,使行动过程中的视觉感知成为可能
为了准确的感知和运动控制,动物必须区分由外部刺激引起的感觉体验和由自身行为引起的感觉体验。行为的多样性及其对感官的复杂影响使得这种区分具有挑战性。在这里,我们发现了一个动作提示中心,它在大脑的第一个视觉中继中协调运动命令和视觉处理。我们发现腹侧膝状核(vLGN)作为一个必然的放电中心,将视觉平移光流信号与来自扫视、运动和瞳孔动力学的运动拷贝整合在一起。vLGN传递这些信号,以纠正特定动作的视觉扭曲,并改善感知,如上丘和深度估计任务所示。同时,全脑的vLGN投影驱动精确视觉运动控制所必需的纠正行动。我们的研究结果揭示了一个扩展的推论放电架构,该架构通过分布式轮辐网络优化早期视觉转换和协调行动,以实现行动期间的视觉感知。
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来源期刊
Nature neuroscience
Nature neuroscience 医学-神经科学
CiteScore
38.60
自引率
1.20%
发文量
212
审稿时长
1 months
期刊介绍: Nature Neuroscience, a multidisciplinary journal, publishes papers of the utmost quality and significance across all realms of neuroscience. The editors welcome contributions spanning molecular, cellular, systems, and cognitive neuroscience, along with psychophysics, computational modeling, and nervous system disorders. While no area is off-limits, studies offering fundamental insights into nervous system function receive priority. The journal offers high visibility to both readers and authors, fostering interdisciplinary communication and accessibility to a broad audience. It maintains high standards of copy editing and production, rigorous peer review, rapid publication, and operates independently from academic societies and other vested interests. In addition to primary research, Nature Neuroscience features news and views, reviews, editorials, commentaries, perspectives, book reviews, and correspondence, aiming to serve as the voice of the global neuroscience community.
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