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Sensorimotor learning with stereo auditory feedback for a brain-computer interface.

机译:带有脑听觉接口的立体声听觉反馈的感觉运动学习。

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摘要

Motor imagery can be used to modulate sensorimotor rhythms (SMR) enabling detection of voltage fluctuations on the surface of the scalp using electroencephalographic electrodes. Feedback is essential in learning to modulate SMR for non-muscular communication using a brain-computer interface (BCI). A BCI not reliant upon the visual modality not only releases the visual channel for other uses but also offers an attractive means of communication for the physically impaired who are also blind or vision impaired. This study demonstrates the feasibility of replacing the traditional visual feedback modality with stereo auditory feedback. Results from a pilot study were used to select the most appropriate sounds for auditory feedback based on three options: broadband noise and two anechoic instrument samples. Subsequently, an SMR BCI was used to examine the effect on sensorimotor learning with broadband noise utilising a modified stereophonic presentation method. Twenty participants split into equal groups took part in ten sessions. The visual group performed best initially but did not improve over time whilst the auditory group improved as the study progressed. The results demonstrate the feasibility of using stereophonic auditory feedback with broadband noise as opposed to other auditory feedback presentation methods and sounds which are less intuitive.
机译:运动图像可用于调节感觉运动节律(SMR),从而能够使用脑电图电极检测头皮表面的电压波动。反馈对于学习使用脑机接口(BCI)进行非肌肉交流的SMR调制至关重要。不依赖视觉方式的BCI不仅释放了视觉通道用于其他用途,而且还为盲人或视力障碍的肢体残障人士提供了一种有吸引力的交流方式。这项研究证明了用立体声听觉反馈代替传统的视觉反馈方式的可行性。根据一项初步研究的结果,基于三种选择:宽带噪声和两个消声仪器样本,为听觉反馈选择最合适的声音。随后,使用改进的立体声呈现方法,使用SMR BCI检查宽带噪声对感觉运动学习的影响。分成20组的二十名参与者参加了十次会议。视觉组最初表现最佳,但随着时间的推移并没有改善,而听觉组随着研究的进行而有所改善。结果证明了使用带有宽带噪声的立体声听觉反馈的可行性,与其他听觉反馈呈现方法和声音不太直观的方法相反。

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