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首页> 外文期刊>Scientific reports. >Kinematic profiles suggest differential control processes involved in bilateral in-phase and anti-phase movements
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Kinematic profiles suggest differential control processes involved in bilateral in-phase and anti-phase movements

机译:运动型材表明双边相互作用和抗阶段运动中涉及的差分控制过程

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In-phase and anti-phase movements represent two basic coordination modes with different characteristics: during in-phase movements, bilateral homologous muscle groups contract synchronously, whereas during anti-phase movements, they contract in an alternating fashion. Previous studies suggested that in-phase movements represent a more stable and preferential bilateral movement template in humans. The current experiment aims at confirming and extending this notion by introducing new empirical measures of spatiotemporal dynamics during performance of a bilateral circle drawing task in an augmented-reality environment. First, we found that anti-phase compared to in-phase movements were performed with higher radial variability, a result that was mainly driven by the non-dominant hand. Second, the coupling of both limbs was higher during in-phase movements, corroborated by a lower inter-limb phase difference and higher inter-limb synchronization. Importantly, the movement acceleration profile between bilateral hands followed an in-phase relationship during in-phase movements, while no specific relationship was found in anti-phase condition. These spatiotemporal relationships between hands support the hypothesis that differential neural processes govern both bilateral coordination modes and suggest that both limbs are controlled more independently during anti-phase movements, while bilateral in-phase movements are elicited by a common neural generator.
机译:同级和抗相运动代表了具有不同特性的两个基本协调模式:在相相运动期间,双侧同源肌肉群同步合同,而在抗阶段运动期间,它们以交替的方式合同。以前的研究表明,相位运动在人类中代表更稳定和优先的双侧运动模板。目前的实验旨在通过在增强现实环境中引入双边圆形绘图任务的性能期间的时空动力学的新实证措施来确认和扩展这一概念。首先,我们发现与相位运动相比的抗阶段以较高的径向变异性进行,这是主要由非显着手驱动的结果。其次,在相相运动期间,两根肢体的偶联更高,通过较低的肢体相位差和更高的肢体间同步来证实。重要的是,双侧手之间的运动加速度曲线在同相运动期间跟随相位关系,而在抗相位条件下没有发现特定关系。双手之间的那种时空关系支持差动神经过程治理双边配位模式并表明在抗相运动期间更独立地控制两根四肢,而常见的神经发生器引发了双侧相互运动。

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