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fMRI-Guided TMS on Cortical Eye Fields: The Frontal But Not Intraparietal Eye Fields Regulate the Coupling Between Visuospatial Attention and Eye Movements

机译:fMRI指导的TMS在皮质眼视野上:额叶而非眼内视野调节视空间注意力与眼动之间的耦合

摘要

It is well known that parts of a visual scene are prioritized for visual processing, depending on the current situation. How the CNS moves this focus of attention across the visual image is largely unknown, although there is substantial evidence that preparation of an action is a key factor. Our results support the view that direct corticocortical feedback connections from frontal oculomotor areas to the visual cortex are responsible for the coupling between eye movements and shifts of visuospatial attention. Functional magnetic resonance imaging ( fMRI)-guided transcranial magnetic stimulation (TMS) was applied to the frontal eye fields (FEFs) and intraparietal sulcus (IPS). A single pulse was delivered 60, 30, or 0 ms before a discrimination target was presented at, or next to, the target of a saccade in preparation. Results showed that the known enhancement of discrimination performance specific to locations to which eye movements are being prepared was enhanced by early TMS on the FEF contralateral to eye movement direction, whereas TMS on the IPS resulted in a general performance increase. The current findings indicate that the FEF affects selective visual processing within the visual cortex itself through direct feedback projections.
机译:众所周知,视当前场景而定,视觉场景的各个部分会优先进行视觉处理。尽管有充分的证据表明动作的准备是关键因素,但CNS如何在视觉图像上转移注意力的焦点仍是未知之数。我们的结果支持这样一种观点,即从额叶动眼神经区域到视觉皮层的直接皮层皮质反馈连接是造成眼球运动与视觉空间注意力转移之间的耦合的原因。将功能磁共振成像(fMRI)引导的经颅磁刺激(TMS)应用于额叶视野(FEF)和顶壁沟(IPS)。在识别目标出现在准备扫视的目标处或其附近之前,先传递60、30或0 ms的单个脉冲。结果表明,通过在与眼球运动方向相反的FEF上进行早期TMS,可以增强针对眼运动准备位置的识别性能的已知增强,而在IPS上的TMS则可以提高总体性能。目前的发现表明,FEF通过直接反馈投影影响了视觉皮层自身内的选择性视觉处理。

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