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Steady-State Somatosensory Evoked Potential for Brain-Computer Interface—Present and Future

机译:脑机接口的稳态体感诱发电位—现在和将来

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Brain-computer interface (BCI) performance has achieved continued improvement over recent decades, and sensorimotor rhythm-based BCIs that use motor function have been popular subjects of investigation. However, it remains problematic to introduce them to the public market because of their low reliability. As an alternative resolution to this issue, visual-based BCIs that use P300 or steady-state visually evoked potentials (SSVEPs) seem promising; however, the inherent visual fatigue that occurs with these BCIs may be unavoidable. For these reasons, steady-state somatosensory evoked potential (SSSEP) BCIs, which are based on tactile selective attention, have gained increasing attention recently. These may reduce the fatigue induced by visual attention and overcome the low reliability of motor activity. In this literature survey, recent findings on SSSEP and its methodological uses in BCI are reviewed. Further, existing limitations of SSSEP BCI and potential future directions for the technique are discussed.
机译:近几十年来,脑机接口(BCI)性能不断提高,使用运动功能的基于感觉运动节律的BCI已成为受欢迎的研究对象。然而,由于它们的低可靠性,将它们引入公众市场仍然存在问题。作为解决此问题的替代方法,使用P300或稳态视觉诱发电位(SSVEP)的基于视觉的BCI似乎很有希望。但是,这些BCI所固有的视觉疲劳可能是不可避免的。由于这些原因,基于触觉选择性注意的稳态体感诱发电位(SSSEP)BCI最近受到越来越多的关注。这些可以减轻视觉注意力引起的疲劳并克服运动活动的低可靠性。在本文献调查中,回顾了有关SSSEP及其在BCI中的方法学用途的最新发现。此外,讨论了SSSEP BCI的现有局限性以及该技术的潜在未来方向。

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