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Differential motor cortex excitability during observation of normal and abnormal goal-directed movement patterns

机译:差分电机皮层兴奋性在观察正常和异常目标定向运动模式期间

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Beta (similar to 20-Hz) activity induced by median nerve stimulation has been reported to be located in the primary motor cortex (M1) and associated with various movement-related tasks. It has been evident that the similar to 20-Hz activity was suppressed more in the observation of goal-directed than non-goal-directed tool use. However, it remains unclear whether this rhythmic activity is further modulated by the observation of normal and abnormal goal-directed hand movements. We recorded neuromagnetic responses in 19 right-handed healthy adults while they kept relaxed (Rest), manipulated a small cube (Act), observed videotapes with normal (Normal) or abnormal (Abnormal) hand actions. The M1 similar to 20-Hz rebound powers were quantified through minimum norm estimate and time-frequency analysis at the source level. The results showed that compared to the Rest condition, the M1 similar to 20-Hz activities were significantly decreased when subjects observed normal and abnormal hand actions. The suppression was more profound in the Normal than Abnormal condition, indicating a stronger M1 activation during observing graceful, undistorted movement patterns. Our data provided a neurophysiological basis to differentiate the motor cortical activities in the observation of normal and abnormal hand actions. Further research is warranted to verify its clinical benefits in patients with stroke. (C) 2017 Elsevier Ireland Ltd and Japan Neuroscience Society. All rights reserved.
机译:据报道,β(类似于20-Hz)活性诱导的中位神经刺激诱导的活性位于主要运动皮层(M1)中,并与各种运动相关任务相关联。显而易见的是,在观察到目标导向的目标方面比非目标导向工具使用相似的相似达20 Hz活性。然而,仍然尚不清楚这种节奏活动是否进一步通过观察正常和异常的目标导向的手动运动来调节。我们在19名右手健康成年人中记录了神经磁反应,同时它们保持放松(休息),操纵小立方体(行动),观察到具有正常(正常)或异常(异常)手动的录像带。通过在源电平的最小规范估计和时频分析中量化类似于20 Hz反弹功率的M1。结果表明,与静止病症相比,当受试者观察到正常和异常的手动时,M1类似于20 Hz活性的M1显着降低。抑制在正常情况下比异常状况更深刻,表明在观察优雅,未变置的运动模式期间更强的M1激活。我们的数据提供了一种神经生理学的基础,可以在观察正常和异常的手动中区分运动皮质活动。有必要进一步研究,以验证其卒中患者的临床益处。 (c)2017年Elsevier爱尔兰有限公司和日本神经科学社会。版权所有。

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