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A Novel Hybrid Mental Spelling Application Based on Eye Tracking and SSVEP-Based BCI

机译:基于眼动追踪和基于SSVEP的BCI的新型混合心理拼写应用程序

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摘要

Steady state visual evoked potentials (SSVEPs)-based Brain-Computer interfaces (BCIs), as well as eyetracking devices, provide a pathway for re-establishing communication for people with severe disabilities. We fused these control techniques into a novel eyetracking/SSVEP hybrid system, which utilizes eye tracking for initial rough selection and the SSVEP technology for fine target activation. Based on our previous studies, only four stimuli were used for the SSVEP aspect, granting sufficient control for most BCI users. As Eye tracking data is not used for activation of letters, false positives due to inappropriate dwell times are avoided. This novel approach combines the high speed of eye tracking systems and the high classification accuracies of low target SSVEP-based BCIs, leading to an optimal combination of both methods. We evaluated accuracy and speed of the proposed hybrid system with a 30-target spelling application implementing all three control approaches (pure eye tracking, SSVEP and the hybrid system) with 32 participants. Although the highest information transfer rates (ITRs) were achieved with pure eye tracking, a considerable amount of subjects was not able to gain sufficient control over the stand-alone eye-tracking device or the pure SSVEP system (78.13% and 75% of the participants reached reliable control, respectively). In this respect, the proposed hybrid was most universal (over 90% of users achieved reliable control), and outperformed the pure SSVEP system in terms of speed and user friendliness. The presented hybrid system might offer communication to a wider range of users in comparison to the standard techniques.
机译:基于稳态视觉诱发电位(SSVEP)的脑机接口(BCI)以及眼动仪,为重度残疾人提供了重新建立交流的途径。我们将这些控制技术融合到一个新颖的眼动追踪/ SSVEP混合系统中,该系统利用眼动追踪进行初始粗略选择,并利用SSVEP技术进行精细目标激活。根据我们先前的研究,SSVEP方面仅使用了四个刺激,从而为大多数BCI用户提供了足够的控制权。由于不使用眼动追踪数据来激活字母,因此避免了由于不适当的停留时间而导致的误报。这种新颖的方法结合了眼动追踪系统的高速和基于低目标SSVEP的BCI的高分类精度,从而导致两种方法的最佳组合。我们使用30个目标的拼写应用程序对32个参与者的所有三种控制方法(纯眼动跟踪,SSVEP和混合系统)进行了评估,从而评估了所提出的混合系统的准确性和速度。尽管通过纯眼动追踪可以实现最高的信息传输率(ITR),但是相当多的受试者无法获得对独立式眼动追踪设备或纯SSVEP系统的充分控制(分别为78.13%和75%)参与者分别达到了可靠的控制)。在这方面,所提出的混合动力是最通用的(超过90%的用户实现了可靠的控制),并且在速度和用户友好性方面均优于纯SSVEP系统。与标准技术相比,所提出的混合系统可以向更广泛的用户提供通信。

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