首页> 外文期刊>NeuroImage >Frequency-specific modulation of connectivity in the ipsilateral sensorimotor cortex by different forms of movement initiation
【24h】

Frequency-specific modulation of connectivity in the ipsilateral sensorimotor cortex by different forms of movement initiation

机译:通过不同形式的运动开始,IpsilateSimotor皮层连通性的频率特异性调制

获取原文
获取原文并翻译 | 示例
           

摘要

Abstract A consistent finding in motor EEG research is a bilateral attenuation of oscillatory activity over sensorimotor regions close to the onset of an upcoming unilateral hand movement. In contrast, little is known about how movement initiation affects oscillatory activity, especially in the hemisphere ipsilateral to the moving hand. We here investigated the neural mechanisms modulating oscillatory activity in the ipsilateral motor cortex prior to movement onset under the control of two different initiating networks, namely, Self-initiated and Visually-cued actions. During motor preparation, a contralateral preponderance of power over sensorimotor cortex (SM) was observed in α and β bands during Visually-cued movements, whereas power changes were more bilateral during Self-initiated movements. Coherence between ipsilateral SM (iSM) and contralateral SM (cSM) in the α-band was significantly increased compared to the respective baseline values, independent of the context of movement initiation. However, this context-independent cSM-iSM coherence modulated the power changes in iSM in a context-dependent manner, that is, a stronger cSM-iSM coherence correlated with a larger decrease in high-β power over iSM in the Self-initiated condition, in contrast to a smaller decrease in α power in the Visually-cued condition. In addition, the context-dependent coherence between SMA and iSM in the α-band and δ-θ-band for the Self-initiated and Visually-cued condition, respectively, exhibited a similar context-dependent modulation for power changes. Our findings suggest that the initiation of regional oscillations over iSM reflects changes in the information flow with the contralateral sensorimotor and premotor areas dependent upon the context of movement initiation. Importantly, the interaction between regional oscillations and network-like oscillatory couplings indicates different frequency-specific inhibitory mechanisms that modulate the activity in the ipsilateral sensorimotor cortex dependent upon how the movement is initiated.
机译:摘要电机EEG研究中的一致发现是传感器区域的振荡活动的双边衰减,接近即将到来的单侧手动运动。相比之下,众所周知,关于运动启动如何影响振荡活动,特别是在移动手中的半球。在这里,我们研究了两种不同引发的网络,即自我发起和视觉线索行动的控制下运动开始之前调节同侧运动皮层振荡活动的神经机制。在电动机准备期间,在视觉上的运动期间在α和β带中观察到传感器皮质皮层(SM)的对侧优势,而电力变化在自引发运动期间更加双边。与相应的基线值相比,α带中的同侧SM(ISM)和对侧SM(CSM)之间的相干性显着增加,与各自的基线值无关,与运动启动的背景无关。然而,这种无关的CSM-ISM相干性以依赖于上下文的方式调制ISM中的功率变化,即强大的CSM-ISM相干性与自发起条件中的ISM的高β功率较大的较大降低相关相反,与视觉调用条件下的α功率较小的较小降低。另外,SMA和ISM之间的上下文相干在α波段和用于自发和视觉上的条件的Δ-θ-频带之间的相关的相干性,表现出类似的电力变化的相关上下文依赖性调制。我们的研究结果表明,通过ISM的区域振荡的启动反映了信息流的变化,依赖于运动启动的上下文,对侧传感器和热球区域的变化。重要的是,区域振荡和网络状振荡联接器之间的相互作用表明,在调制活性不同的特定频率抑制机制同侧感觉皮层取决于运动是如何启动的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号