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An fMRI-Neuronavigated Chronometric TMS Investigation of V5 and Intraparietal Cortex in Motion Driven Attention

机译:在运动驱动注意中对V5和腹腔内皮层进行fMRI-神经导航计时TMS研究

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摘要

The timing of networked brain activity subserving motion driven attention in humans is currently unclear. Functional MRI (fMRI)-neuronavigated chronometric transcranial magnetic stimulation (TMS) was used to investigate critical times of parietal cortex involvement in motion driven attention. In particular, we were interested in the relative critical times for two intraparietal sulcus (IPS) sites in comparison to that previously identified for motion processing in area V5, and to explore potential earlier times of involvement. fMRI was used to individually localize V5 and middle and posterior intraparietal sulcus (mIPS; pIPS) areas active for a motion driven attention task, prior to TMS neuronavigation. Paired-pulse TMS was applied during performance of the same task at stimulus onset asynchronies (SOAs) ranging from 0 to 180 ms. There were no statistically significant decreases in performance accuracy for trials where TMS was applied to V5 at any SOA, though stimulation intensity was lower for this site than for the parietal sites. For TMS applied to mIPS, there was a trend toward a relative decrease in performance accuracy at the 150 ms SOA, as well as a relative increase at 180 ms. There was no statistically significant effect overall of TMS applied to pIPS, however, there appeared a potential trend toward a decrease in performance at the 0 ms SOA. Overall, these results provide some patterns of potential theoretical interest to follow up in future studies.
机译:目前尚不清楚网络中大脑活动支持运动驱动注意力的时机。使用功能性MRI(fMRI)神经元计时性经颅磁刺激(TMS)来研究顶叶皮层参与运动驱动注意力的关键时间。尤其是,与先前在V5区域进行运动处理所确定的时间相比,我们对两个顶壁沟(IPS)站点的相对临界时间感兴趣,并探索了可能的早期介入时间。在TMS神经导航之前,使用fMRI分别定位V5以及活跃于运动驱动注意任务的活动性顶叶中沟和后沟(mIPS; pIPS)区域。在执行同一任务期间,在0到180毫秒的刺激发作异步(SOA)期间应用了成对脉冲TMS。在任何SOA下将TMS应用于V5的试验中,性能准确性没有统计学上的显着下降,尽管该部位的刺激强度低于顶叶部位。对于应用于mIPS的TMS,存在一种趋势,即在150 ms SOA时性能精度相对降低,而在180 ms时则相对提高。 TMS应用于pIPS的总体效果没有统计学上的显着影响,但是,在0 ms SOA时,存在性能下降的潜在趋势。总体而言,这些结果提供了一些潜在的理论兴趣模式,可用于以后的研究。

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