闭锁综合征患者低成本单通道脑电图通信系统

Khalil Ullah, Mohsin Ali, M. Rizwan, M. Imran
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引用次数: 21

摘要

随着生物医学信号在临床和非临床应用中的应用越来越多。他们在设备的开发方面做了大量工作,这些设备可以通过从思想中推断出的信息来控制。基于脑电信号的脑机接口(BCI)是当前研究的热点之一。脑机接口(BCI)是一种使人类根据从思想中推断出的信息来控制计算机或其他设备的技术。脑机接口提供了另一种沟通渠道,给患有闭锁综合症和运动障碍的人带来了新的希望。现有的bci是多通道的,在成本和处理速度上都非常昂贵,难以在国内使用。本研究论文的目的是介绍一种非常便宜,简单和强大的单通道BCI,可以在市场上流行。我们提出了一种非常低成本的基于脑电图的脑机接口,旨在帮助严重残疾人通过文本和短信与他人交流。为了使其简单和经济实惠,通道数量限制在一个,信号通过自制银电极采集,然后通过声卡馈送到计算机进行进一步处理和特征提取。实验结果表明,该系统能够提供一种非常低成本、可靠的通信方式和适合家庭使用的BCI。其平均准确率为87%。这项技术的潜在用途几乎是无限的。代替通信系统,残疾用户可以使用机器人轮椅,允许他们移动并直接与环境互动,因此它可以用于临床和非临床目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-cost single-channel EEG based communication system for people with lock-in syndrome
As the use of biomedical signals is incredibly increasing in both clinical and nonclinical applications. They have a great deal in the development of devices that can be controlled by information inferred from thoughts. One of the current hot topics for research is the Brain Computer Interface (BCI) on basis of EEG signals. BCI is a technology that makes humans to control computer or other devices on basis of information inferred from thoughts. BCIs have given new hopes to people who suffer from locked-in syndrome and motor disabilities by providing alternative means of communication channels. The existing BCIs are Multi-channel, thus very expensive in terms of cost and processing speed, which make them difficult for domestic use. The aim of this research paper is to introduce a very cheap, simple and a robust single channel BCI that could prevail in the market. We propose a very low-cost EEG-based BCI that is designed to help severely disabled people communicate with others by means of text and SMS. To make it simple and affordable, the number of channels is limited to one and signal is acquired through homemade silver electrodes and then fed to the computer through the soundcard for further processing and features extractions. The experimental results show that the proposed system is capable enough to provide a very low cost, yet reliable, communication means and a suitable BCI for domestic use. Its average accuracy is 87%. The potential uses for the technology are almost limitless. Instead of communication system, disabled users could have robotic wheelchair, allowing them to move and directly interact with the environments thus it can be used for clinical and nonclinical purposes.
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