...
首页> 外文期刊>Journal of NeuroEngineering Rehabilitation >Toward brain-computer interface based wheelchair control utilizing tactually-evoked event-related potentials
【24h】

Toward brain-computer interface based wheelchair control utilizing tactually-evoked event-related potentials

机译:利用触觉诱发的事件相关电位实现基于脑机接口的轮椅控制

获取原文

摘要

Background People with severe disabilities, e.g. due to neurodegenerative disease, depend on technology that allows for accurate wheelchair control. For those who cannot operate a wheelchair with a joystick, brain-computer interfaces (BCI) may offer a valuable option. Technology depending on visual or auditory input may not be feasible as these modalities are dedicated to processing of environmental stimuli (e.g. recognition of obstacles, ambient noise). Herein we thus validated the feasibility of a BCI based on tactually-evoked event-related potentials (ERP) for wheelchair control. Furthermore, we investigated use of a dynamic stopping method to improve speed of the tactile BCI system. Methods Positions of four tactile stimulators represented navigation directions (left thigh: move left; right thigh: move right; abdomen: move forward; lower neck: move backward) and N?=?15 participants delivered navigation commands by focusing their attention on the desired tactile stimulus in an oddball-paradigm. Results Participants navigated a virtual wheelchair through a building and eleven participants successfully completed the task of reaching 4 checkpoints in the building. The virtual wheelchair was equipped with simulated shared-control sensors (collision avoidance), yet these sensors were rarely needed. Conclusion We conclude that most participants achieved tactile ERP-BCI control sufficient to reliably operate a wheelchair and dynamic stopping was of high value for tactile ERP classification. Finally, this paper discusses feasibility of tactile ERPs for BCI based wheelchair control.
机译:背景严重残疾的人,例如由于神经退行性疾病,需要依靠能够精确控制轮椅的技术。对于无法使用操纵杆操作轮椅的人,脑机接口(BCI)可能是一个有价值的选择。依靠视觉或听觉输入的技术可能不可行,因为这些模式专门用于处理环境刺激(例如,识别障碍物,环境噪声)。因此,本文中我们基于触觉诱发的事件相关电位(ERP)验证了轮椅控制BCI的可行性。此外,我们研究了使用动态停止方法来提高触觉BCI系统的速度。方法四个触觉刺激器的位置代表导航方向(左大腿:向左移动;右大腿:向右移动;腹部:向前移动;下颈部:向后移动),N == 15位参与者通过将注意力集中在所需的方向上来传递导航命令奇数范例中的触觉刺激。结果参与者在建筑物中驾驶虚拟轮椅,十一名参与者成功完成了到达建筑物中四个检查站的任务。虚拟轮椅配备了模拟共享控制传感器(避免碰撞),但很少需要这些传感器。结论我们得出的结论是,大多数参与者实现了足以可靠地操作轮椅的触觉ERP-BCI控制,并且动态停止对于触觉ERP分类具有很高的价值。最后,本文讨论了基于BCI的轮椅控制触觉ERPs的可行性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号