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Optic Flow Stimuli in and Near the Visual Field Centre: A Group fMRI Study of Motion Sensitive Regions

机译:视野中心及其附近的视觉流动刺激:运动敏感区域的fMRI研究

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摘要

Motion stimuli in one visual hemifield activate human primary visual areas of the contralateral side, but suppress activity of the corresponding ipsilateral regions. While hemifield motion is rare in everyday life, motion in both hemifields occurs regularly whenever we move. Consequently, during motion primary visual regions should simultaneously receive excitatory and inhibitory inputs. A comparison of primary and higher visual cortex activations induced by bilateral and unilateral motion stimuli is missing up to now. Many motion studies focused on the MT+ complex in the parieto-occipito-temporal cortex. In single human subjects MT+ has been subdivided in area MT, which was activated by motion stimuli in the contralateral visual field, and area MST, which responded to motion in both the contra- and ipsilateral field. In this study we investigated the cortical activation when excitatory and inhibitory inputs interfere with each other in primary visual regions and we present for the first time group results of the MT+ subregions, allowing for comparisons with the group results of other motion processing studies. Using functional magnetic resonance imaging (fMRI), we investigated whole brain activations in a large group of healthy humans by applying optic flow stimuli in and near the visual field centre and performed a second level analysis. Primary visual areas were activated exclusively by motion in the contralateral field but to our surprise not by central flow fields. Inhibitory inputs to primary visual regions appear to cancel simultaneously occurring excitatory inputs during central flow field stimulation. Within MT+ we identified two subregions. Putative area MST (pMST) was activated by ipsi- and contralateral stimulation and located in the anterior part of MT+. The second subregion was located in the more posterior part of MT+ (putative area MT, pMT).
机译:一个视觉半场中的运动刺激会激活人类对侧的主要视觉区域,但会抑制相应的同侧区域的活动。虽然半场运动在日常生活中很少见,但无论何时我们运动,两个半场中的运动都会定期发生。因此,在运动过程中,主要视觉区域应同时接受兴奋性和抑制性输入。迄今为止,尚缺乏对由双侧和单侧运动刺激引起的初级和高级视皮层激活的比较。许多运动研究都集中在顶枕颞颞皮层的MT +复合体上。在单人受试者中,MT +被细分为MT区和MST区,MT区由对侧视野中的运动刺激激活,而MST区对对侧和同侧视野中的运动都有反应。在这项研究中,我们研究了当兴奋性和抑制性输入在主要视觉区域相互干扰时的皮质激活,并且我们首次展示了MT +子区域的分组结果,以便与其他运动处理研究的分组结果进行比较。使用功能磁共振成像(fMRI),我们通过在视野中心及其附近应用光学血流刺激,研究了一大群健康人的全脑激活,并进行了第二级分析。主要的视觉区域仅通过对侧视野中的运动来激活,但令我们惊讶的是,不是中央流场激活的。对主要视觉区域的抑制性输入似乎抵消了中央流场刺激期间同时发生的兴奋性输入。在MT +中,我们确定了两个分区。推定区域MST(pMST)通过同侧和对侧刺激激活,位于MT +的前部。第二个子区域位于MT +的更后部分(假定区域MT,pMT)。

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