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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Cognitive Control of Saccadic Selection and Inhibition from within the Core Cortical Saccadic Network
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Cognitive Control of Saccadic Selection and Inhibition from within the Core Cortical Saccadic Network

机译:核心皮质扫视网络内扫视选择和抑制的认知控制

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摘要

The ability to select the task-relevant stimulus for a saccadic eye movement, while inhibiting saccades to task-irrelevant stimuli, is crucial for active vision. Here, we present a novel saccade-contingent behavioral paradigm and investigate the neural basis of the central cognitive functions underpinning such behavior, saccade selection, saccade inhibition, and saccadic choice, in female and male human participants. The paradigm allows for exceptionally well-matched contrasts, with task demands formalized with stochastic accumulation-to-threshold models. Using fMRI, we replicated the core cortical eye-movement network for saccade generation (frontal eye fields, posterior parietal cortex, and higher-level visual areas). However, in contrast to previously published tasks, saccadic selection and inhibition recruited only this core network. Brain-behavior analyses further showed that inhibition efficiency may be underpinned by white-matter integrity of tracts between key saccade-generating regions, and that inhibition efficiency is associated with right inferior frontal gyrus engagement, potentially implementing general-purpose inhibition. The core network, however, was insufficient for saccadic choice, which recruited anterior regions commonly attributed to saccadic action selection, including dorsolateral prefrontal cortex and anterior cingulate cortex. Jointly, the results indicate that extra-saccadic activity observed for free choice, and in previously published tasks probing saccadic control, is likely due to increased load on higher-level cognitive processes, and not saccadic selection per se, which is achieved within the canonical cortical eye movement network.
机译:选择扫视眼球运动的任务相关刺激的能力,同时抑制扫描到任务 - 无关刺激,对于活性视觉至关重要。在这里,我们提出了一种新的扫视偶然行为范式,并调查了女性和男性人类参与者中的中央认知函数的神经基础,其行为,扫视选择,扫描抑制和扫视选择。 PARADIGM允许出于异常匹配的对比度,任务要求用随机累积到阈值模型正式化。使用FMRI,我们将核心皮质眼球运动网络复制用于扫视生成(额外眼部,后视网膜和更高级别的视觉区域)。然而,与先前公布的任务相比,扫视选择和禁止仅招募了这一核心网络。脑行为分析进一步表明,抑制效率可以通过关键扫视产生区域之间的白质完整性而受到抑制效率,并且抑制效率与右下额转接合有关,潜在地实施通用抑制。然而,核心网络对扫视的选择不足,招募通常归因于扫视作用选择的前部区域,包括背侧前额定皮层和前型铰接皮质。共同,结果表明,为自由选择观察到的超扫视活动,并且在先前公布的扫视控制中,可能是由于更高级认知过程的负荷增加,而不是扫视选择,这在规范内实现皮质眼球运动网络。

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