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Visual Information Shapes the Dynamics of Corticobasal Ganglia Pathways during Response Selection and Inhibition

机译:视觉信息塑造反应选择和抑制过程中皮质基底神经节通路的动力学。

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Action selection often requires the transformation of visual information into motor plans. Preventing premature responses may entail the suppression of visual input and/or of prepared muscle activity. This study examined how the quality of visual information affects frontobasal ganglia (BG) routes associated with response selection and inhibition. Human fMRI data were collected from a stop task with visually degraded or intact face stimuli. During go trials, degraded spatial frequency information reduced the speed of information accumulation and response cautiousness. Effective connectivity analysis of the fMRI data showed action selection to emerge through the classic direct and indirect BG pathways, with inputs deriving form both prefrontal and visual regions. When stimuli were degraded, visual and prefrontal regions processing the stimulus information increased connectivity strengths toward BG, whereas regions evaluating visual scene content or response strategies reduced connectivity toward BG. Response inhibition during stop trials recruited the indirect and hyperdirect BG pathways, with input from visual and prefrontal regions. Importantly, when stimuli were nondegraded and processed fast, the optimal stop model contained additional connections from prefrontal to visual cortex. Individual differences analysis revealed that stronger prefrontal-to-visual connectivity covaried with faster inhibition times. Therefore, prefrontal-to-visual cortex connections appear to suppress the fast flow of visual input for the go task, such that the inhibition process can finish before the selection process. These results indicate response selection and inhibition within the BG to emerge through the interplay of top–down adjustments from prefrontal and bottom–up input from sensory cortex.
机译:动作选择通常需要将视觉信息转换为运动计划。防止过早的反应可能需要抑制视觉输入和/或准备好的肌肉活动。这项研究检查了视觉信息的质量如何影响与反应选择和抑制相关的额叶神经节(BG)途径。从具有视觉退化或完好无损的面部刺激的停止任务中收集人类fMRI数据。在进行试验时,降级的空间频率信息会降低信息积累和响应谨慎性的速度。有效的功能磁共振成像数据的连通性分析表明,动作选择是通过经典的直接和间接BG途径出现的,输入来自前额叶和视觉区域。当刺激退化时,处理刺激信息的视觉和前额叶区域会增强与BG的连通性,而评估视觉场景内容或响应策略的区域则会降低与BG的连通性。停止试验期间的反应抑制采用了视觉和前额叶区域的输入,招募了间接和超直接BG途径。重要的是,当刺激未被降解并快速处理时,最佳停止模型包含从额叶皮层到视觉皮层的其他连接。个体差异分析显示,更强的前额叶-视觉连接性与更快的抑制时间相关。因此,前额叶到视觉皮层的连接似乎抑制了去任务的视觉输入的快速流动,从而抑制过程可以在选择过程之前完成。这些结果表明,BG内的反应选择和抑制作用是通过前额叶调节和前额叶调节以及自感觉皮层的自下而上输入的相互作用而出现的。

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