class='kwd-title'>Keywords: TMS, Motion, Ipsi-la'/> An enhanced role for right hV5/MT+ in the analysis of motion in the contra- and ipsi-lateral visual hemi-fields
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An enhanced role for right hV5/MT+ in the analysis of motion in the contra- and ipsi-lateral visual hemi-fields

机译:右hV5 / MT +在对侧和同侧视觉半视野运动分析中的增强作用

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摘要

class="kwd-title">Keywords: TMS, Motion, Ipsi-lateral, Contra-lateral, MT, MST class="head no_bottom_margin" id="abs0015title">AbstractPrevious experiments have demonstrated that transcranial magnetic stimulation (TMS) of human V5/MT+, in either the left or right cerebral hemisphere, can induce deficits in visual motion perception in their respective contra- and ipsi-lateral visual hemi-fields. However, motion deficits in the ipsi-lateral hemi-field are greater when TMS is applied to V5/MT + in the right hemisphere relative to the left hemisphere. One possible explanation for this asymmetry might lie in differential stimulation of sub-divisions within V5/MT + across the two hemispheres. V5/MT + has two major sub-divisions; MT/TO-1 and MST/TO-2, the latter area contains neurons with large receptive fields (RFs) that extend up to 15° further into the ipsi-lateral hemi-field than the former. We wanted to examine whether applying TMS to MT/TO-1 and MST/TO-2 separately could explain the previously reported functional asymmetries for ipsi-lateral motion processing in V5/MT + across right and left cerebral hemispheres. MT/TO-1 and MST/TO-2 were identified in seven subjects using fMRI localisers. In psychophysical experiments subjects identified the translational direction (up/down) of coherently moving dots presented in either the left or right visual field whilst repetitive TMS (25 Hz; 70%) was applied synchronously with stimulus presentation. Application of TMS to MT/TO-1 and MST/TO-2 in the right hemisphere affected translational direction discrimination in both contra-lateral and ipsi-lateral visual fields. In contrast, deficits of motion perception following application of TMS to MT/TO-1 and MST/TO-2 in the left hemisphere were restricted to the contra-lateral visual field. This result suggests an enhanced role for the right hemisphere in processing translational motion across the full visual field.
机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>关键字: TMS,Motion,同侧,对侧,MT,MST class =“ head no_bottom_margin“ id =” abs0015title“>摘要以前的实验表明,人的V5 / MT +的经颅磁刺激(TMS)在左半脑或右半脑中均会在各自的对照中诱发视觉运动感知障碍-和同侧外侧视觉半视野。但是,当将TMS应用于右半球的V5 / MT +相对于左半球时,同侧半球视野中的运动障碍更大。这种不对称性的一种可能解释可能是横跨两个半球的V5 / MT +内细分的不同刺激。 V5 / MT +具有两个主要细分;后面的区域MT / TO-1和MST / TO-2包含神经元,它们具有较大的感受野(RF),比前者更向同侧半场延伸15°。我们想研究是否将TMS分别应用于MT / TO-1和MST / TO-2可以解释先前报道的左右脑半球V5 / MT +中同侧运动处理的功能不对称。使用fMRI定位器在7名受试者中鉴定了MT / TO-1和MST / TO-2。在心理物理实验中,受试者识别出在左视野或右视野中出现的连贯移动点的平移方向(上/下),而重复性TMS(25 Hz; 70%)与刺激表现同步应用。在右半球将TMS应用于MT / TO-1和MST / TO-2会影响对侧和同侧视野中的翻译方向辨别。相反,在左半球将TMS应用于MT / TO-1和MST / TO-2后,运动知觉障碍仅限于对侧视野。该结果表明右半球在处理整个视野中的平移运动中的作用增强。

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