Lee Jeyeon, Choi Hoseok, Min Kyeongran, Lee Seho, Ahn Kyung-Ha, Jo Hang Joon, Kim In Young, Jang Dong Pyo, Lee Kyoung-Min
Department of Biomedical Engineering, Hanyang University, Seoul, South Korea.
Department of Neurologic Surgery, Mayo Clinic, Rochester, MN, United States.
Front Behav Neurosci. 2018 Oct 2;12:186. doi: 10.3389/fnbeh.2018.00186. eCollection 2018.
A fronto-parietal network, comprised of the posterior parietal cortex (PPC) and the dorsal premotor cortex (PMd) has been proposed to be involved in planning and guiding movement. However, the issue of how the network is expressed across the bilateral cortical area according to the effector's side remains unclear. In this study, we tested these questions using electrocorticographic (ECoG) recordings in non-human primates and using a simple visual guided reaching task that induced a left or right hand response based on relevant cues provided for the task. The findings indicate that right hemisphere lateralized network patterns in which the right PMd was strongly coordinated with bilateral PPC immediately after presentation of the movement cue occurred, while the coherence with the left PMd was not enhanced. No difference was found in the coherence pattern between the effector's side (left hand or right hand), but the strength of coherence was different, in that animals showed a higher coherence in the right hand response compared to the left. Our data support that right lateralization in long-range phase synchrony in the 10-20 Hz low beta band is involved in motor preparation stage, irrespective of the upcoming effector's side.
由后顶叶皮质(PPC)和背侧运动前皮质(PMd)组成的额顶网络被认为参与运动的计划和引导。然而,该网络如何根据效应器的一侧在双侧皮质区域表达的问题仍不清楚。在本研究中,我们使用非人类灵长类动物的皮质脑电图(ECoG)记录,并采用简单的视觉引导伸手任务,根据为该任务提供的相关线索诱发左手或右手反应,来测试这些问题。研究结果表明,在呈现运动提示后立即出现右半球偏侧化网络模式,其中右侧PMd与双侧PPC强烈协调,而与左侧PMd的连贯性未增强。效应器一侧(左手或右手)的连贯性模式没有差异,但连贯性强度不同,即动物在右手反应中的连贯性高于左手。我们的数据支持,无论即将到来的效应器一侧如何,10-20Hz低β波段的远程相位同步中的右侧化参与运动准备阶段。