Goal-Directed Action Planning Modulates Surround Suppression in the Visual System

感觉系统 神经科学 汽车规划 抓住 心理学 感知 电动机控制 视觉感受 动作(物理) 环绕抑制 视觉处理 视觉系统 沟通 任务(项目管理) 调制(音乐) 电动机系统 对比度(视觉) 神经系统 对象(语法) 计算机科学 脑电图 人工智能
作者
Yihui Zhang,Jie Gao,Zhiqing Deng,Tian Wang,Wenyuan Wang,Yanli Wang,Can Wang,Xiaoli Liu,Yijin Wang,Jinyi Long,J. Randall Flanagan,Jason P. Gallivan,Biao Han,Juan Chen
出处
期刊:The Journal of Neuroscience [Society for Neuroscience]
卷期号:46 (19): e1171252026-e1171252026
标识
DOI:10.1523/jneurosci.1171-25.2026
摘要

Action planning has been traditionally viewed through the lens of motor command specification. However, converging evidence indicates planning also modulates early cortical sensory systems. While previous studies mainly focused on the modulation to a single target object, it remains unclear how action planning modulates the spatial interaction between target and flankers in a cluttered scene. Here we directly tested this using EEG with frequency tagging to measure visual surround suppression-a key cortical mechanism for object segregation-while participants (22 females, 14 males) planned to grasp a target among flankers. We hypothesized that surround suppression, essential for distinguishing the target from distractors, would be enhanced when planning to grasp the target compared with planning a nontarget-directed action where segregation is less critical. Further, based on evidence suggesting that surround suppression when "executing" a grasping movement is greater for dominant than nondominant hand, we predict that this specificity should likewise exist during "planning". Confirming our predictions, EEG results demonstrated that planning a grasp significantly amplified surround suppression relative to planning a simple key release. This enhancement was additively modulated by target relevance and hand dominance, being strongest when planning a dominant-hand grasp. Crucially, a control task (planning a perceptual judgment) elicited no such suppression, supporting the action specificity of this sensory tuning. These results provide neural evidence at the level of visual mechanisms that action preparation actively and selectively refines early sensory processing for efficient goal-directed action.
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