Brain-computer interface technology: a review of the first international meeting.

J R Wolpaw, N Birbaumer, W J Heetderks, D J McFarland, P H Peckham, G Schalk, E Donchin, L A Quatrano, C J Robinson, T M Vaughan
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引用次数: 2126

Abstract

Over the past decade, many laboratories have begun to explore brain-computer interface (BCI) technology as a radically new communication option for those with neuromuscular impairments that prevent them from using conventional augmentative communication methods. BCI's provide these users with communication channels that do not depend on peripheral nerves and muscles. This article summarizes the first international meeting devoted to BCI research and development. Current BCI's use electroencephalographic (EEG) activity recorded at the scalp or single-unit activity recorded from within cortex to control cursor movement, select letters or icons, or operate a neuroprosthesis. The central element in each BCI is a translation algorithm that converts electrophysiological input from the user into output that controls external devices. BCI operation depends on effective interaction between two adaptive controllers, the user who encodes his or her commands in the electrophysiological input provided to the BCI, and the BCI which recognizes the commands contained in the input and expresses them in device control. Current BCI's have maximum information transfer rates of 5-25 b/min. Achievement of greater speed and accuracy depends on improvements in signal processing, translation algorithms, and user training. These improvements depend on increased interdisciplinary cooperation between neuroscientists, engineers, computer programmers, psychologists, and rehabilitation specialists, and on adoption and widespread application of objective methods for evaluating alternative methods. The practical use of BCI technology depends on the development of appropriate applications, identification of appropriate user groups, and careful attention to the needs and desires of individual users. BCI research and development will also benefit from greater emphasis on peer-reviewed publications, and from adoption of standard venues for presentations and discussion.

脑机接口技术:第一届国际会议综述。
在过去的十年中,许多实验室已经开始探索脑机接口(BCI)技术,将其作为一种全新的通信选择,用于那些因神经肌肉损伤而无法使用传统的辅助通信方法的患者。脑机接口为这些用户提供了不依赖周围神经和肌肉的通信通道。本文总结了第一次致力于脑机接口研究与开发的国际会议。目前的脑机接口使用记录在头皮上的脑电图(EEG)活动或皮层内记录的单单元活动来控制光标的运动,选择字母或图标,或操作神经假体。每个脑机接口的核心元素是一个转换算法,它将来自用户的电生理输入转换为控制外部设备的输出。BCI的运行依赖于两个自适应控制器之间的有效交互,用户在提供给BCI的电生理输入中编码他或她的命令,而BCI识别输入中包含的命令并将其表达为设备控制。目前BCI的最大信息传输速率为5-25 b/min。实现更快的速度和准确性取决于信号处理、翻译算法和用户培训方面的改进。这些改进取决于神经科学家、工程师、计算机程序员、心理学家和康复专家之间跨学科合作的增加,以及客观方法的采用和广泛应用,以评估替代方法。BCI技术的实际使用取决于开发适当的应用程序,确定适当的用户群体,并仔细关注个人用户的需求和愿望。脑机接口的研究和发展也将受益于更加重视同行评议的出版物,以及采用标准的演讲和讨论场所。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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