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Ears on the Hand: Reaching Three-Dimensional Targets With an Audio-Motor Device

机译:耳朵手上:用音频电机装置达到三维目标

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摘要

Understanding the processes underlying sensorimotor coupling with the environment is crucial for sensorimotor rehabilitation and sensory substitution. In doing so, devices which provide novel sensory feedback consequent to body movement may be optimized in order to enhance motor performance for particular tasks. The aim of the study reported here was to investigate audio-motor coupling when the auditory experience is linked to movements of the head or the hands. The participants had to localize and reach a virtual source with the dominant hand in response to sounds. An electromagnetic system recorded the position and orientation of the participants' head and hands. This system was connected to a 3D audio system that provided binaural auditory feedback on the position of the virtual listener located on the participants' body. The listener's position was computed either from the hands or from the head. For the hand condition, the virtual listener was placed on the dominant hand (the one used to reach the target) in Experiment 1 and on the non-dominant hand, which was constrained in order to have similar amplitude and degrees of freedom as that of the head, in Experiment 2. The results revealed that, in the two experiments, the participants were able to localize a source within the 3D auditory environment. Performance varied as a function of the effector's degrees of freedom and the spatial coincidence between sensor and effector. The results also allowed characterizing the kinematics of the hand and head and how they change with audio-motor coupling condition and practice.
机译:了解潜在传感器耦合与环境的过程对于感觉体康复和感官替代是至关重要的。在这样做时,可以优化提供对身体运动的新颖感官反馈的设备,以便增强特定任务的电动机性能。当听觉经验与头部或手的运动相关联时,研究的目的是研究音频电动机耦合。参与者必须通过响应声音定位和达到主导手的虚拟来源。电磁系统记录了参与者头部和手的位置和方向。该系统连接到3D音频系统,该音频系统提供关于位于参与者身体上的虚拟侦听器的位置的双耳听觉反馈。听众的位置是从手或头部计算的。对于手动条件,将虚拟侦听器放置在实验1和非显着手上的主导手(用于到达目标的那个),其被约束,以便具有与之相似的幅度和自由度头部,在实验2中。结果显示,在两个实验中,参与者能够在3D听觉环境中定位源。性能随着效应器自由度的函数和传感器和效应器之间的空间巧合而变化。结果还允许表征手动和头部的运动学以及它们如何随音频电机耦合条件和实践而改变。

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