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An event-related fMRI study of self-paced alphabetically ordered writing of single letters

机译:与事件相关的功能磁共振成像研究,以自定节奏按字母顺序书写单个字母

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The spatial location of activation for writing individual letters and for writing simple dots was studied using event-related functional MRI. Ten healthy right-handed subjects were scanned while performing two different protocols with self-paced repetitive movement. In the first protocol with self-paced dot writing, we observed significant activation in regions known to participate in motor control: contralateral to the movement in the primary sensorimotor and supramarginal cortices, the supplementary motor area (SMA) with the underlying cingulate, in the thalamus and, to a lesser extent, in the ipsilateral inferior parietal and occipital cortices. In the second protocol, we investigated an elemental writing feature—writing single letters. We observed statistically significant changes in the premotor, sensorimotor and supramarginal cortices, the SMA and the thalamus with left predominance, and in the bilateral premotor and inferior/superior parietal cortices. The parietal region that was active during the writing of single letters spanned the border between the parietal superior and inferior lobuli Brodmann area (BA 2, 40), deep in the intraparietal sulcus, with a surprising right-sided dominance. The direct comparison of the results of the two protocols was not significant with a confidence level of P<0.05 corrected for whole brain volume. Thus, the ROI approach was used, and we tried to find significant differences within the two predefined regions of interest (ROI) (BA 7, BA 37). The differences were found with a confidence level of P<0.05 corrected for the volume of these predicted areas. The ROI were located in the posterior parts of hemispheres, in the ventral and in the dorsal visual pathway. The right-sided posterior cortices may play a role in the elemental mechanisms of writing. It is possible that activation of this region is linked with the spatial dimension of the writing.
机译:使用事件相关功能MRI研究了用于书写单个字母和书写简单点的激活的空间位置。扫描十名健康的右撇子受试者,同时进行两种不同的自律重复运动方案。在第一个带有自定进度点写的协议中,我们观察到已知参与运动控制的区域中的显着激活:与主要感觉运动和上颌皮质运动,对侧运动带的附加运动区(SMA)相对,丘脑,以及程度较小的同侧下顶叶和枕叶皮质。在第二个协议中,我们研究了基本的书写功能-书写单个字母。我们观察到在运动前,感觉运动和肺上皮质,SMA和丘脑(左优势)以及双侧运动前和上/下顶叶皮质有统计学上的显着变化。在单个字母书写过程中活跃的顶叶区域跨越顶叶沟深处的顶叶上部和下部小叶布罗德曼区域(BA 2,40)之间的边界,具有令人惊讶的右侧优势。两种方案结果的直接比较并不显着,全脑容量校正的置信度P <0.05。因此,使用了ROI方法,并且我们尝试在两个预定义的感兴趣区域(ROI)(BA 7,BA 37)中发现显着差异。发现差异,对这些预测区域的体积进行校正的置信度为P <0.05。 ROI位于半球的后部,腹侧和背侧视觉通路中。右侧后皮质可能在书写的基本机制中起作用。该区域的激活可能与书写的空间尺寸有关。

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