论文标题

在虚拟现实环境中复杂运动任务中姿势肌肉协同作用的评估

Evaluation of Postural Muscle Synergies during a Complex Motor Task in a Virtual Reality Environment

论文作者

Ai, Xupeng, Santamaria, Victor, Omofuma, Isirame Babajide, Agrawal, Sunil K.

论文摘要

在这项研究中,我们研究了中枢神经系统(CNS)如何在个人在虚拟现实(VR)环境中执行复杂的捕捉任务时如何组织姿势控制协同作用。机器人直立的立式培训师(健壮)平台,包括表面肌电图和运动学,用于研究中枢神经系统微型姿势协同作用,具有扰动和辅助的力场。招募了一个没有辅助部队的对照组,以阐明力场在扰动后以及在VR达到任务期间对运动性能和姿势协同组织的影响。我们发现,辅助力量的应用显着改善了达到和平衡控制。接收辅助力的小组显示出四个姿势控制协同作用,其特征是较高的复杂性(即涉及更多肌肉)。但是,对照对象显示出八种协同作用,这些协同作用减少了肌肉的数量。总之,辅助力减少了姿势协同的数量,同时增加了肌肉模块组成的复杂性。

In this study, we investigate how the central nervous system (CNS) organizes postural control synergies when individuals perform a complex catch-and-throw task in a virtual reality (VR) environment. A Robotic Upright Stand Trainer (RobUST) platform, including surface electromyography and kinematics, was used to investigate how the CNS fine-tunes postural synergies with perturbative and assist-as-needed force fields. A control group without assistive forces was recruited to elucidate the effect of force fields on motor performance and postural synergy organization after the perturbation and during the VR reaching task. We found that the application of assistive forces significantly improved reaching and balance control. The group receiving assistive forces displayed four postural control synergies characterized by higher complexity (i.e., greater number of muscles involved). However, control subjects displayed eight synergies that recruited less number of muscles. In conclusion, assistive forces reduce the number of postural synergies while increasing the complexity of muscle module composition.

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