van der Hoorn Anouk, Potgieser Adriaan R E, de Jong Bauke M
Department of Neurology, University Medical Center Groningen, University of Groningen, Hanzeplein 1, 9700, RB Groningen, The Netherlands; Neuroimaging Center, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands; Department of Radiology, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands.
Eur J Neurosci. 2014 Sep;40(6):2980-6. doi: 10.1111/ejn.12656. Epub 2014 Jun 19.
Lateralization of higher brain functions requires that a dominant hemisphere collects relevant information from both sides. The right dorsal premotor cortex (PMd), particularly implicated in visuomotor transformations, was hypothesized to be optimally located to converge visuospatial information from both hemispheres for goal-directed movement. This was assessed by probabilistic tractography and a novel analysis enabling group comparisons of whole-brain connectivity distributions of the left and right PMd in standard space (16 human subjects). The resulting dominance of contralateral PMd connections was characterized by right PMd connections with left visual and parietal areas, indeed supporting a dominant role in visuomotor transformations, while the left PMd showed dominant contralateral connections with the frontal lobe. Ipsilateral right PMd connections were also stronger with posterior parietal regions, relative to the left PMd connections, while ipsilateral connections of the left PMd were stronger with, particularly, the anterior cingulate, the ventral premotor and anterior parietal cortex. The pattern of dominant right PMd connections thus points to a specific role in guiding perceptual information into the motor system, while the left PMd connections are consistent with action dominance based on a lead in motor intention and fine precision skills.
高级脑功能的偏侧化要求优势半球从两侧收集相关信息。右背侧运动前区皮质(PMd),尤其与视觉运动转换有关,被推测其位置最佳,能够汇聚来自两侧半球的视觉空间信息以进行目标导向运动。通过概率性纤维束成像和一种新颖的分析方法对此进行了评估,该方法能够在标准空间中对16名人类受试者的左右PMd的全脑连接分布进行组间比较。由此产生的对侧PMd连接优势表现为右PMd与左视觉和顶叶区域的连接,确实支持了其在视觉运动转换中的主导作用,而左PMd则显示出与额叶的优势对侧连接。相对于左PMd连接,右PMd与后顶叶区域的同侧连接也更强,而左PMd的同侧连接与前扣带回、腹侧运动前区和前顶叶皮质的连接更强。因此,右PMd优势连接模式表明其在将感知信息导入运动系统中具有特定作用,而左PMd连接则与基于运动意图领先和精细精确技能的动作优势相一致。