4.5 Article

Inferior frontal gyrus links visual and motor cortices during a visuomotor precision grip force task

期刊

BRAIN RESEARCH
卷 1650, 期 -, 页码 252-266

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.brainres.2016.09.011

关键词

Visuomotor integration; Coherence; Functional connectivity; Inferior frontal gyrus; Magnetoencephalography

资金

  1. Provincia Autonoma di Trento
  2. Fondazione Cassa di Risparmio di Trento e Rovereto
  3. German Ministry for Research and Technology
  4. Werner Reichardt Center for Integrative Neuroscience (CIN) at the University of Tubingen
  5. Deutsche Forschungsgemeinschaft (DFG) [EXC 307]

向作者/读者索取更多资源

Coordination between vision and action relies on a fronto-parietal network that receives visual and proprioceptive sensory input in order to compute motor control signals. Here, we investigated with magnetoencephalography (MEG) which cortical areas are functionally coupled on the basis of synchronization during visuomotor integration. MEG signals were recorded from twelve healthy adults while performing a unimanual visuomotor (VM) task and control conditions. The VM task required the integration of pinch motor commands with visual sensory feedback. By using a beamformer, we localized the neural activity in the frequency range of 1-30 Hz during the VM compared to rest. Virtual sensors were estimated at the active locations. A multivariate autoregressive model was used to estimate the power and coherence of estimated activity at the virtual sensors. Event-related desynchronisation (ERD) during VM was observed in early visual areas, the rostral part of the left inferior frontal gyrus (IFG), the right IFG, the superior parietal lobules, and the left hand motor cortex (M1). Functional coupling in the alpha frequency band bridged the regional activities observed in motor and visual cortices (the start and the end points in the visuomotor loop) through the left or right IFG. Coherence between the left IFG and left Ml correlated inversely with the task performance. Our results indicate that an occipital-prefrontal motor functional network facilitates the modulation of instructed motor responses to visual cues. This network may supplement the mechanism for guiding actions that is fully incorporated into the dorsal visual stream. (C) 2016 Elsevier B.V. All rights reserved.

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