首页> 外文期刊>Experimental Brain Research >Time flies when you are in a groove: using entrainment to mechanical resonance to teach a desired movement distorts the perception of the movement's timing.
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Time flies when you are in a groove: using entrainment to mechanical resonance to teach a desired movement distorts the perception of the movement's timing.

机译:时间飞行在凹槽中:使用夹带来机械共振来教导所需的运动扭曲运动的时机的感知。

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The human motor system quickly entrains rhythmic limb movement to the resonant frequency of mechanical systems with which it interacts, suggesting that entrainment to an appropriately designed training device might be a convenient way to teach desired movements. We tested this possibility by asking healthy subjects (N = 30) to learn to move with a desired movement timing using a simple resonating arm training device: a lever attached to a manual wheelchair. The subjects tried to learn to roll the lever-driven wheelchair back and forth in place at a target frequency initially presented using a series of auditory beeps. One-third of the subjects trained without resonance and with no further feedback about rolling frequency; their performance did not improve. Another group trained with continual visual feedback of frequency error but no resonance; they quickly learned to roll the chair at the target frequency, as evidenced at both short-term and long-term (1 day later) retention tests. A third group trained with elastic bands attached to the lever that caused the system to resonate at the target frequency, providing a timing template. While these participants quickly entrained to the target frequency during training, they did not accurately reproduce this frequency when the system was no longer resonant, moving too slowly with the same systematic error at both the short-term and long-term retention tests. They also did not exhibit a timing aftereffect on the initial movements made when they transitioned from a resonant to non-resonant system or vice versa. This suggests they did not realize they were performing the task with a temporal error. Entrainment to mechanical resonance conveys usable information about movement timing, but seems to cause that movement timing to be perceived as slower than it actually is, as if a putative internal clock speeds up, which is a factor to consider in designing machine-assisted motor training.
机译:人机电机系统迅速将节奏肢体运动纳入其与其相互作用的机械系统的谐振频率,这表明对适当设计的训练装置的夹带可能是教导所需运动的方便方式。我们通过询问健康的主题(n = 30)来学习使用简单的谐振臂训练装置来使用所需的运动定时进行测试:连接到手动轮椅上的杠杆。受试者试图学习在最初使用一系列听觉蜂鸣声呈现最初呈现的目标频率的杠杆驱动的轮椅上。在没有共振的情况下培训的课程中的三分之一,没有关于滚动频率的进一步反馈;他们的表现并没有改善。另一组培训频率误差的连续视觉反馈,但没有共振;他们迅速学会在目标频率下滚动椅子,如短期和长期(稍后一天)保留测试所证明。第三组用连接到杠杆的弹性带训练,导致系统以目标频率谐振,提供定时模板。虽然这些参与者在训练期间快速纳入目标频率时,当系统不再谐振时,它们没有准确地再现这种频率,但在短期和长期保留测试中,在相同的系统误差和长期保留测试中移动太慢。当它们从谐振到非谐振系统转变时,它们也没有在初始运动上表现出时序后的时间,反之亦然。这表明他们没有意识到他们正在使用时间错误执行任务。机械谐振的夹带传达有关运动时机的可用信息,但似乎导致运动时序被认为比其实际更慢,好像一个推定的内部时钟加速,这是在设计机器辅助电动机训练时考虑的因素。

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