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Studying the Role of Human Parietal Cortex in Visuospatial Attention with Concurrent TMS-fMRI

机译:并行TMS-fMRI研究人顶叶皮层在视觉空间注意中的作用

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摘要

Combining transcranial magnetic stimulation (TMS) with concurrent functional magnetic resonance imaging (fMRI) allows study of how local brain stimulation may causally affect activity in remote brain regions. Here, we applied bursts of high- or low-intensity TMS over right posterior parietal cortex, during a task requiring sustained covert visuospatial attention to either the left or right hemifield, or in a neutral control condition, while recording blood oxygenation-level-dependent signal with a posterior MR surface coil. As expected, the active attention conditions activated components of the well-described "attention network,” as compared with the neutral baseline. Also as expected, when comparing left minus right attention, or vice versa, contralateral occipital visual cortex was activated. The critical new finding was that the impact of high- minus low-intensity parietal TMS upon these visual regions depended on the currently attended side. High- minus low-intensity parietal TMS increased the difference between contralateral versus ipsilateral attention in right extrastriate visual cortex. A related albeit less pronounced pattern was found for left extrastriate visual cortex. Our results confirm that right human parietal cortex can exert attention-dependent influences on occipital visual cortex and provide a proof of concept for the use of concurrent TMS-fMRI in studying how remote influences can vary in a purely top-down manner with attentional demands
机译:将经颅磁刺激(TMS)与并发功能磁共振成像(fMRI)结合使用,可以研究局部脑刺激如何因果影响偏远大脑区域的活动。在这里,我们在需要持续隐蔽视觉空间注意左半球或右半球或处于中性控制状态的任务期间,在右后顶叶皮层上施加高强度或低强度TMS脉冲,同时记录血液氧合水平的依赖性后MR表面线圈发出信号。正如预期的那样,与中性基线相比,主动注意条件激活了描述良好的“注意网络”的组成部分;也如预期的那样,在比较左减去右注意或反之时,对侧枕叶视觉皮层被激活。一个新的发现是,高减低强度顶叶TMS对这些视觉区域的影响取决于当前就诊的一侧;高减低强度顶叶TMS增加了对右眼外侧皮层对侧与同侧注意力之间的差异。我们的研究结果证实,右侧人顶叶皮层可以对枕骨视皮层施加注意力依赖的影响,并为并发TMS-fMRI研究远程影响如何发挥作用提供了概念证明。纯粹以自上而下的方式变化并引起关注

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