Jamil Nuraini, Belkacem Abdelkader Nasreddine, Lakas Abderrahmane
Department of Computer Science and Software Engineering, College of Information Technology, UAE University, P.O. Box 15551 Abu Dhabi Al-Ain, UAE.
Department of Computer and Network Engineering, College of Information Technology, UAE University, P.O. Box 15551 Abu Dhabi Al-Ain, UAE.
Educ Inf Technol (Dordr). 2023;28(4):4363-4397. doi: 10.1007/s10639-022-11372-2. Epub 2022 Oct 17.
The COVID-19 pandemic has interrupted education institutions in over 150 nations, affecting billions of students. Many governments have forced a transition in higher education from in-person to remote learning. After this abrupt, worldwide transition away from the classroom, some question whether online education will continue to grow in acceptance in post-pandemic times. However, new technology, such as the brain-computer interface and eye-tracking, have the potential to improve the remote learning environment, which currently faces several obstacles and deficiencies. Cognitive brain computer interfaces can help us develop a better understanding of brain functions, allowing for the development of more effective learning methodologies and the enhancement of brain-based skills. We carried out a systematic literature review of research on the use of brain computer interfaces and eye-tracking to measure students' cognitive skills during online learning. We found that, because many experimental tasks depend on recorded rather than real-time video, students don't have direct and real-time interaction with their teacher. Further, we found no evidence in any of the reviewed papers for brain-to-brain synchronization during remote learning. This points to a potentially fruitful future application of brain computer interfaces in education, investigating whether the brains of student-teacher pairs who interact with the same course content have increasingly similar brain patterns.
新冠疫情已经扰乱了150多个国家的教育机构,影响了数十亿学生。许多政府已迫使高等教育从面授学习转向远程学习。在这场从课堂教学突然向全球范围转变之后,一些人质疑在线教育在疫情后时代的接受度是否会持续增长。然而,诸如脑机接口和眼动追踪等新技术,有可能改善目前面临若干障碍和不足的远程学习环境。认知脑机接口有助于我们更好地理解大脑功能,从而开发更有效的学习方法,并提升基于大脑的技能。我们对利用脑机接口和眼动追踪来测量学生在线学习期间认知技能的研究进行了系统的文献综述。我们发现,由于许多实验任务依赖于录制的视频而非实时视频,学生无法与教师进行直接的实时互动。此外,我们在所审查的任何论文中都未发现远程学习期间脑对脑同步的证据。这表明脑机接口在教育领域有着潜在的丰硕应用前景,即研究与相同课程内容互动的学生-教师对的大脑是否具有越来越相似的脑模式。