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Can You Hear That Peak? Utilization of Auditory and Visual Feedback at Peak Limb Velocity

机译:你能听到那个高峰吗?峰肢速度时听觉和视觉反馈的利用

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Purpose: At rest, the central nervous system combines and integrates multisensory cues to yield an optimal percept. When engaging in action, the relative weighing of sensory modalities has been shown to be altered. Because the timing of peak velocity is the critical moment in some goal-directed movements (e.g., overarm throwing), the current study sought to test whether visual and auditory cues are optimally integrated at that specific kinematic marker when it is the critical part of the trajectory. Methods: Participants performed an upper-limb movement in which they were required to reach their peak limb velocity when the right index finger intersected a virtual target (i.e., a flinging movement). Brief auditory, visual, or audiovisual feedback (i.e., 20ms in duration) was provided to participants at peak limb velocity. Performance was assessed primarily through the resultant position of peak limb velocity and the variability of that position. Results: Relative to when no feedback was provided, auditory feedback significantly reduced the resultant endpoint variability of the finger position at peak limb velocity. However, no such reductions were found for the visual or audiovisual feedback conditions. Further, providing both auditory and visual cues concurrently also failed to yield the theoretically predicted improvements in endpoint variability. Conclusions: Overall, the central nervous system can make significant use of an auditory cue but may not optimally integrate a visual and auditory cue at peak limb velocity, when peak velocity is the critical part of the trajectory.
机译:目的:休息时,中枢神经系统结合并整合多感官线索,以产生最佳知觉。在进行动作时,已证明感觉模态的相对权重已改变。由于峰值速度的时机是某些目标运动(例如,投掷)中的关键时刻,因此,当前的研究试图检验在特定运动学标记中视觉和听觉提示是否是最佳关键,而这是运动的关键所在。弹道。方法:参与者进行上肢运动,其中当右手食指与虚拟目标相交时,他们必须达到其肢体峰值速度(即,猛扑运动)。在肢体峰值速度时向参与者提供了简短的听觉,视觉或视听反馈(即,持续时间为20毫秒)。主要通过峰值肢体速度的合成位置和该位置的可变性来评估性能。结果:相对于未提供反馈时,听觉反馈显着降低了肢体峰值速度时手指位置的最终终点变化。但是,对于视觉或视听反馈条件,没有发现这种减少。此外,同时提供听觉和视觉提示也未能产生理论上预期的终点变异性的改善。结论:总的来说,当峰值速度是轨迹的关键部分时,中枢神经系统可以充分利用听觉提示,但可能无法在肢体峰值速度时最佳地整合视觉和听觉提示。

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