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Increased prefrontal activity and reduced motor cortex activity during imagined eccentric compared to concentric muscle actions

机译:与同心肌肉动作相比在想象中的偏心期间增加了前额叶活动并减少了运动皮层活动

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摘要

In this study we used functional magnetic resonance imaging (fMRI) to examine differences in recruited brain regions during the concentric and the eccentric phase of an imagined maximum resistance training task of the elbow flexors in healthy young subjects. The results showed that during the eccentric phase, pre-frontal cortex (BA44) bilaterally was recruited when contrasted to the concentric phase. During the concentric phase, however, the motor and pre-motor cortex (BA 4/6) was recruited when contrasted to the eccentric phase. Interestingly, the brain activity of this region was reduced, when compared to the mean activity of the session, during the eccentric phase. Thus, the neural mechanisms governing imagined concentric and eccentric contractions appear to differ. We propose that the recruitment of the pre-frontal cortex is due to an increased demand of regulating force during the eccentric phase. Moreover, it is possible that the inability to fully activate a muscle during eccentric contractions may partly be explained by a reduction of activity in the motor and pre-motor cortex.
机译:在这项研究中,我们使用功能磁共振成像(fMRI)来检查健康年轻受试者中想象中的肘部屈肌最大阻力训练任务的同心和偏心阶段在募集的大脑区域中的差异。结果表明,在偏心期,与同心期相比,双侧前额叶皮层(BA44)被募集。然而,在同心阶段,与偏心阶段相比,运动和运动前皮质(BA 4/6)被募集。有趣的是,与会话的平均活动相比,该区域的大脑活动在离心阶段减少了。因此,控制想象的同心收缩和偏心收缩的神经机制似乎有所不同。我们认为前额叶皮层的募集是由于偏心期对调节力的需求增加。此外,有可能在偏心收缩过程中无法完全激活肌肉的部分原因是运动和皮质运动减少。

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