Wang Jinhai, Wang Kangning, Chen Xiaogang, Wang Huiquan, Xu Shengpu, Liu Ming
School of Electronics and Information Engineering, Tianjin Polytechnic University, Tianjin 300387, P.R.China.
School of Electronics and Information Engineering, Tianjin Polytechnic University, Tianjin 300387, P.R.China;Institute of Biomedical Engineering, Chinese Academy of Medical Sciences and Peking Union Medical College, Tianjin 300192, P.R.China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2020 Jun 25;37(3):502-511. doi: 10.7507/1001-5515.201906025.
Brain-controlled wheelchair (BCW) is one of the important applications of brain-computer interface (BCI) technology. The present research shows that simulation control training is of great significance for the application of BCW. In order to improve the BCW control ability of users and promote the application of BCW under the condition of safety, this paper builds an indoor simulation training system based on the steady-state visual evoked potentials for BCW. The system includes visual stimulus paradigm design and implementation, electroencephalogram acquisition and processing, indoor simulation environment modeling, path planning, and simulation wheelchair control, etc. To test the performance of the system, a training experiment involving three kinds of indoor path-control tasks is designed and 10 subjects were recruited for the 5-day training experiment. By comparing the results before and after the training experiment, it was found that the average number of commands in Task 1, Task 2, and Task 3 decreased by 29.5%, 21.4%, and 25.4%, respectively ( < 0.001). And the average number of commands used by the subjects to complete all tasks decreased by 25.4% ( < 0.001). The experimental results show that the training of subjects through the indoor simulation training system built in this paper can improve their proficiency and efficiency of BCW control to a certain extent, which verifies the practicability of the system and provides an effective assistant method to promote the indoor application of BCW.
脑控轮椅(BCW)是脑机接口(BCI)技术的重要应用之一。目前的研究表明,模拟控制训练对于BCW的应用具有重要意义。为了提高用户的BCW控制能力,并在安全条件下促进BCW的应用,本文构建了一种基于稳态视觉诱发电位的BCW室内模拟训练系统。该系统包括视觉刺激范式设计与实现、脑电图采集与处理、室内模拟环境建模、路径规划以及模拟轮椅控制等。为测试该系统的性能,设计了一项涉及三种室内路径控制任务的训练实验,并招募了10名受试者进行为期5天的训练实验。通过比较训练实验前后的结果发现,任务1、任务2和任务3中的平均指令数分别减少了29.5%、21.4%和25.4%(<0.001)。并且受试者完成所有任务所使用的平均指令数减少了25.4%(<0.001)。实验结果表明,通过本文构建的室内模拟训练系统对受试者进行训练,可以在一定程度上提高他们BCW控制的熟练度和效率,验证了该系统的实用性,并为促进BCW在室内的应用提供了一种有效的辅助方法。