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Separating Visual and Motor Components of Motor Cortex Activation for Multiple Reach Targets: A Visuomotor Adaptation Study

机译:分离运动皮层激活的多个视觉目标的视觉和运动成分:Visuomotor适应性研究

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摘要

Ethologically inspired models of movement preparation view the sensorimotor system as sampling information from the environment in a parallel fashion in preparation for multiple potential actions. In support, the configuration of the physical workspace, manipulated by the number or spatial separation of potential targets, has been shown to modulate sensorimotor neural activity. It is unclear, however, whether this modulation is driven by the sensory layout of the workspace or through the associated motor plans. Here, we combine a delayed-movement pre-cuing task with visuomotor adaptation to address this question in human subjects while recording MEG. By dissociating visual and motor coordinates of two targets using visuomotor adaptation, the task was designed to evaluate, in a selective fashion, the effects of visual and movement target separation on movement preparatory activity. The results did not allow the intended comparison due to an unanticipated effect of the direction of visuomotor adaptation on baseline oscillatory power in beta and low-gamma bands. Fortuitously, this effect was dependent on whether the adaptation direction decreased or increased the angular separation between alternative movements. That is, there was a sustained reduction of oscillatory power, which was stronger at small compared with large target separation. These results support a direct influence of movement target separation on motor cortex neural activity, mediated by lateral interactions between simultaneously active motor plans. The results further demonstrate a novel effect of visuomotor adaptation on motor cortex oscillatory activity, with properties that support the local nature of learned changes in visuomotor mapping.>SIGNIFICANCE STATEMENT There is growing evidence that the motor cortex routinely prepares for different movements simultaneously, each suited to a possible course of events in the immediate environment. The preparatory motor cortex activity for different movements can be seen as a competition between groups of neurons. This competition is influenced by how similar the alternative movements are; for example, in terms of direction, determined by the proximity of alternative movement goals. This study investigates whether the proximity of alternative reach goals has a direct influence on motor cortex activity (in the form of brain oscillations) or if it has an effect only through conscious evaluation of the separation between targets. We establish that there is a direct effect, supporting the biased competition model of action selection.
机译:受运动学影响的模型受到了人类学的启发,将感觉运动系统视为来自环境的采样信息,以并行方式为多种潜在的运动做准备。作为支持,物理工作空间的配置受潜在目标的数量或空间分隔的控制,已被证明可调节感觉运动神经活动。但是,尚不清楚这种调制是由工作空间的感官布局还是通过相关的电机计划驱动的。在这里,我们将延迟运动的预提示任务与视觉运动适应相结合,以在记录MEG时解决人类受试者的这个问题。通过使用视觉运动适应来分离两个目标的视觉和运动坐标,该任务被设计为以选择性方式评估视觉和运动目标分离对运动准备活动的影响。由于粘性运动适应的方向对β和低γ波段的基线振荡功率产生了不可预料的影响,因此结果无法进行预期的比较。幸运的是,这种效果取决于适应方向是减小还是增加了交替运动之间的角度间隔。即,振荡功率持续降低,与大的靶标分离相比,小功率更强。这些结果支持运动目标分离对运动皮层神经活动的直接影响,该影响由同时活动的运动计划之间的横向相互作用介导。结果进一步证明了视觉运动适应对运动皮层振荡活动的新颖影响,其性质支持了运动视觉皮层映射中学习变化的局部性质。>意义声明,越来越多的证据表明运动皮层常规地为运动做准备。同时进行不同的运动,每种运动都适合于即时环境中可能发生的事件。不同运动的预备运动皮层活动可以看作是神经元组之间的竞争。这项比赛受到其他运动的相似程度的影响。例如,在方向方面,由替代运动目标的接近程度决定。这项研究调查了替代性达成目标的接近性是否对运动皮层活动有直接影响(以脑震荡的形式),或者是否仅通过有意识地评估目标之间的分离而产生影响。我们确定存在直接作用,支持行动选择的偏向竞争模型。

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