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首页> 外文期刊>Journal of motor behavior >Cortical Networks for Correcting Errors in Sensorimotor Synchronization Depend on the Direction of Asynchrony
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Cortical Networks for Correcting Errors in Sensorimotor Synchronization Depend on the Direction of Asynchrony

机译:用于校正SensorImotor同步中的错误的皮质网络取决于异步的方向

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Recent work provides clues that different cortical mechanisms may be employed when correcting for errors in sensorimotor synchronization that increase tap-tone asynchrony compared with those that decrease it. The authors tested this hypothesis by recording 64-channel electroencephalography while participants synchronized with an auditory metronome. We systematically introduced positive and negative phase-shift perturbations that were either liminal (10%) and subliminal (3%). We used a distributed source modeling approach to evaluate oscillatory activity and connectivity of discrete cortical sources. Three key findings support our hypothesis. First was a theta band response indicative of error detection and top-down control observed in frontomedial presupplementary motor area (pre-SMA) and anterior cingulate for liminal positive perturbations. Second was an increase in theta band coupling between the SMA and contralateral motor cortex exclusively for positive perturbations suggesting a top-down modulation of motor parameters. Third, when compared with other conditions, liminal positive perturbations result in an increase in postmovement beta rebound within contralateral primary motor cortex. The authors propose that frontomedial motor areas exert a top-down inhibitory influence over the primary motor cortex to effectively lengthen tap intervals in response to lengthening tap-tone asynchronies.
机译:最近的工作提供了在纠正SensorImotor同步中的错误时可以使用不同皮质机制的线索,从而与减少它的那些相比,可以增加抽头音的异步。作者通过记录64通道脑电图测试了这一假设,而参与者与听觉节拍器同步。我们系统地引入纯度和阴性相移扰动,纯阈值(10%)和潜水锁定(3%)。我们使用了分布式源建模方法来评估离散皮质源的振荡活动和连接性。三个主要调查结果支持我们的假设。首先是指示在初始预先预先设定的电动机区域(Pre-SMA)和纯型扰动中的前刺伤中观察到的误差检测和自上而下控制的响应。其次是SMA和对侧电机之间的Theta带耦合的增加专门用于积极扰动,表明电动机参数的自上而下调制。第三,与其他条件相比,纯度正扰动导致对侧初级运动皮层内的预后β反弹的增加。作者提出了前面的电动机区域对初级电机皮层产生自上而下的抑制影响,以有效地延长延长抽头间隔,以响应于延长的抽头旋转异步。

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