首页> 外文期刊>Biological Psychology >Wheelchair control by elderly participants in a virtual environment with a brain-computer interface (BCI) and tactile stimulation
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Wheelchair control by elderly participants in a virtual environment with a brain-computer interface (BCI) and tactile stimulation

机译:具有大脑-计算机接口(BCI)和触觉刺激的虚拟环境中老年参与者的轮椅控制

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摘要

Tactile event-related potential (ERP) are rarely used as input signal to control brain-computer-interfaces (BCI) due to their low accuracy and speed (information transfer rate, ITR). Age-related loss of tactile sensibility might further decrease their viability for the target population of BCI. In this study we investigated whether training improves tactile ERP-BCI performance within a virtual wheelchair navigation task. Elderly subjects participated in 5 sessions and tactors were placed at legs, abdomen and back. Mean accuracy and ITR increased from 88.43%/4.5 bits min(-1) in the 1st to 92.56%/4.98 bits min(-1) in the last session. The mean P300 amplitude increased from 5.46 mu V to 9.22 mu V. In an optional task participants achieved an accuracy of 95,56% and a mean ITR of 20,73 bits min(-1) which is the highest ever achieved with tactile stimulation. Our sample of elderly people further contributed to the external validity of our results. (C) 2016 Elsevier B.V. All rights reserved.
机译:由于触觉事件相关电位(ERP)的准确性和速度(信息传输速率,ITR)低,因此很少用作控制脑机接口(BCI)的输入信号。与年龄相关的触觉敏感性丧失可能会进一步降低其对BCI目标人群的生存能力。在这项研究中,我们调查了训练是否在虚拟轮椅导航任务中提高了触觉ERP-BCI的性能。老年受试者参加了5次训练,将触觉器放置在腿,腹部和背部。平均准确度和ITR从第一天的88.43%/ 4.5位min(-1)增加到最后一次会话的92.56%/ 4.98位min(-1)。 P300的平均振幅从5.46μV增加到9.22μV。在一项可选任务中,参与者达到了95.56%的准确度和20.73位min(-1)的平均ITR,这是有触觉刺激所达到的最高水平。我们的老年人样本进一步提高了我们结果的外部有效性。 (C)2016 Elsevier B.V.保留所有权利。

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