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Visual and Auditory Augmented Concurrent Feedback in a Complex Motor Task

机译:复杂运动任务中视觉和听觉增强的并发反馈

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摘要

In general, concurrent augmented feedback has been shown to effectively enhance learning in complex motor tasks. However, to optimize technical systems that are intended to reinforce motor learning, a systematic evaluation of different augmented feedback designs is required. Until now, mainly visual augmented feedback has been applied to enhance learning of complex motor tasks. Since most complex motor tasks are mastered in response to information visually perceived, providing augmented concurrent feedback in a visual manner may overload the capacities of visual perception and cognitive processing. Thus, the aim of this work was to evaluate the practicability of auditory feedback designs supporting a three-dimensional rowing-type movement in comparison with visual feedback designs. We term a feedback design practical if the provided information can easily be perceived and interpreted, and immediately be used to support the movement. In a first experiment, it became evident that participants could interpret three-dimensional auditory feedback designs based on stereo balance, pitch, timbre, and/or volume. Eleven of 12 participants were able to follow the different target movements using auditory feedback designs as accurately as with a very abstract visual feedback design. Visual designs based on superposition of actual and target oar orientation led to the most accurate performance. Considering the first experimental results, the feedback designs were further developed and again evaluated. It became evident that a permanent visual display of the target trajectories could further enhance movement accuracy. Moreover, results indicated that the practicability of the auditory designs depends on the polarity of the mapping functions. In general, both visual and auditory concurrent feedback designs were practical to immediately support multidimensional movement. In a next step, the effectiveness to enhance motor learning will be systematically evaluated.
机译:通常,并发的增强反馈已被证明可以有效地增强复杂运动任务中的学习。但是,为了优化旨在加强运动学习的技术系统,需要对不同的增强反馈设计进行系统评估。到目前为止,主要是视觉增强反馈已被用于增强对复杂运动任务的学习。由于大多数复杂的运动任务是响应于视觉感知的信息而掌握的,因此以视觉方式提供增强的并发反馈可能会使视觉感知和认知处理的能力超负荷。因此,这项工作的目的是评估与视觉反馈设计相比,支持三维划船运动的听觉反馈设计的实用性。如果提供的信息可以很容易地被感知和解释,并立即用于支持运动,那么我们将其称为反馈设计。在第一个实验中,很明显,参与者可以根据立体声平衡,音调,音色和/或音量来解释三维听觉反馈设计。 12位参与者中的11位能够像使用非常抽象的视觉反馈设计一样,通过听觉反馈设计准确地跟踪不同的目标运动。基于实际桨叶方向和目标桨叶方向的叠加进行的视觉设计带来了最精确的性能。考虑到最初的实验结果,进一步开发了反馈设计并再次进行了评估。显而易见的是,目标轨迹的永久视觉显示可以进一步提高运动精度。此外,结果表明听觉设计的实用性取决于映射功能的极性。通常,视觉和听觉并发反馈设计都可以立即支持多维运动。下一步,将系统评估增强运动学习的有效性。

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  • 来源
    《Presence》 |2011年第1期|p.5-32|共28页
  • 作者单位

    Sensory-Motor Systems (SMS) Lab Institute of Robotics and Intelligent Systems (IRIS) ETH Zurich Switzerland and Medical Faculty University of Zurich Switzerland;

    Sensory-Motor Systems (SMS) Lab Institute of Robotics and Intelligent Systems (IRIS) ETH Zurich Switzerland and Medical Faculty University of Zurich Switzerland;

    Sensory-Motor Systems (SMS) Lab Institute of Robotics and Intelligent Systems (IRIS) ETH Zurich Switzerland and Medical Faculty University of Zurich Switzerland;

    Sensory-Motor Systems (SMS) Lab Institute of Robotics and Intelligent Systems (IRIS) ETH Zurich Switzerland and Medical Faculty University of Zurich Switzerland;

    Sensory-Motor Systems (SMS) Lab Institute of Robotics and Intelligent Systems (IRIS) ETH Zurich Switzerland and Medical Faculty University of Zurich Switzerland;

    Sensory-Motor Systems (SMS) Lab Institute of Robotics and Intelligent Systems (IRIS) ETH Zurich Switzerland and Medical Faculty University of Zurich Switzerland;

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