CEITEC-Central European Institute of Technology, Multimodal and Functional Neuroimaging and Applied Neurosciences Research Groups, Masaryk University, Kamenice 5, 625 00, Brno, Czech Republic.
Department of Neurology, University of Arizona, Tucson, USA.
J Neural Transm (Vienna). 2020 Mar;127(3):331-337. doi: 10.1007/s00702-019-02131-8. Epub 2020 Jan 4.
This study investigates the role of the dorsal/sensorimotor striatum in visuomotor integration (i.e., the transformation of internal visual information about letter shapes into motor output) during handwriting. Twenty healthy participants underwent fMRI scanning with tasks consisting of self-paced handwriting of alphabetically ordered single letters and simple dots, with both tasks performed without visual feedback. Functional connectivity (FC) from these two tasks was compared to demonstrate the difference between coordinated activity arising during handwriting and the activity during a simpler motor condition. Our study focused upon the writing-specific cortico-striatal network of preselected regions of interest consisting of the visual word form area (VWFA), anterior intraparietal sulcus/superior parietal lobule, striatum, premotor cortex/Exner's area, and primary and supplementary motor regions. We observed systematically increased task-induced cortico-striatal and cortico-cortical FC. This increased synchronization of neural activity between the VWFA, i.e., the visual cortical area containing information about letter shapes, and the frontoparietal motor regions is mediated by the striatum. These findings suggest the involvement of the striatum in integrating stored letter-shape information with motor planning and execution during handwriting.
本研究旨在探讨背侧/感觉运动纹状体在手写过程中在视动整合(即将字母形状的内部视觉信息转化为运动输出)中的作用。二十名健康参与者接受了 fMRI 扫描,任务包括自我调节的手写字母顺序的单个字母和简单点,两个任务都没有视觉反馈。比较这两个任务的功能连接(FC),以证明手写过程中协调活动与更简单运动状态下的活动之间的差异。我们的研究集中在前选感兴趣区域的皮质纹状体网络,包括视觉词形区(VWFA)、前内顶叶沟/上顶叶叶、纹状体、运动前皮质/Exner 区、初级和辅助运动区。我们观察到皮质纹状体和皮质皮质 FC 诱导的系统性增加。这种 VWFA(包含字母形状信息的视觉皮质区域)与额顶叶运动区域之间神经活动的同步性增加是由纹状体介导的。这些发现表明纹状体参与了在手写过程中整合存储的字母形状信息与运动规划和执行。