Brain Imaging Laboratory, Department of Psychology, Sapienza University, Via dei Marsi 78, 00185 Roma, Italy.
PhD program in Behavioral Neuroscience, Sapienza University of Rome, Via dei Marsi 78, 00185 Roma, Italy.
Cereb Cortex. 2023 Mar 10;33(6):2517-2538. doi: 10.1093/cercor/bhac223.
Despite extensive research, the functional architecture of the subregions of the dorsal posterior parietal cortex (PPC) involved in sensorimotor processing is far from clear. Here, we draw a thorough picture of the large-scale functional organization of the PPC to disentangle the fronto-parietal networks mediating visuomotor functions. To this aim, we reanalyzed available human functional magnetic resonance imaging data collected during the execution of saccades, hand, and foot pointing, and we combined individual surface-based activation, resting-state functional connectivity, and effective connectivity analyses. We described a functional distinction between a more lateral region in the posterior intraparietal sulcus (lpIPS), preferring saccades over pointing and coupled with the frontal eye fields (FEF) at rest, and a more medial portion (mpIPS) intrinsically correlated to the dorsal premotor cortex (PMd). Dynamic causal modeling revealed feedforward-feedback loops linking lpIPS with FEF during saccades and mpIPS with PMd during pointing, with substantial differences between hand and foot. Despite an intrinsic specialization of the action-specific fronto-parietal networks, our study reveals that their functioning is finely regulated according to the effector to be used, being the dynamic interactions within those networks differently modulated when carrying out a similar movement (i.e. pointing) but with distinct effectors (i.e. hand and foot).
尽管已经进行了广泛的研究,但参与感觉运动处理的背侧后顶叶皮层(PPC)亚区的功能结构仍不清楚。在这里,我们全面描绘了 PPC 的大规模功能组织,以理清介导视觉运动功能的额顶叶网络。为此,我们重新分析了在执行扫视、手和脚指向期间收集的可用人类功能磁共振成像数据,并结合了个体表面激活、静息状态功能连接和有效连接分析。我们描述了后内顶叶沟(lpIPS)中更靠外侧的区域和更靠内侧的部分(mpIPS)之间的功能区别,前者更喜欢扫视,而后者则与静息时的额眼区(FEF)相连,后者与背侧运动前皮层(PMd)内在相关。动态因果建模揭示了在扫视期间将 lpIPS 与 FEF 连接起来的前馈-反馈回路,以及在指向期间将 mpIPS 与 PMd 连接起来的前馈-反馈回路,手和脚之间存在显著差异。尽管针对特定动作的额顶叶网络具有内在的专业化,但我们的研究表明,它们的功能是根据要使用的效应器进行精细调节的,在执行类似的运动(即指向)但使用不同的效应器(即手和脚)时,这些网络中的动态相互作用会受到不同的调节。