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Cerebral and gaze data fusion for wheelchair navigation enhancement: case of distracted users

机译:脑和注视数据融合以增强轮椅导航能力:分散注意力的用户

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The goal of this paper is to present a new hybrid system based on the fusion of gaze data and Steady State Visual Evoked Potentials (SSVEP) not only to command a powered wheelchair, but also to account for users distraction levels (concentrated or distracted). For this purpose, a multilayer perception neural network was set up in order to combine relevant gazing and blinking features from gaze sequence and brainwave features from occipital and parietal brain regions. The motivation behind this work is the shortages raised from the individual use of gaze-based and SSVEP-based wheelchair command techniques. The proposed framework is based on three main modules: a gaze module to select command and activate the flashing stimuli. An SSVEP module to validate the selected command. In parallel, a distraction level module estimates the intention of the user by mean of behavioral entropy and validates/inhibits the command accordingly. An experimental protocol was set up and the prototype was tested on five paraplegic subjects and compared with standard SSVEP and gaze-based systems. The results showed that the new framework performed better than conventional gaze-based and SSVEP-based systems. Navigation performance was assessed based on navigation time and obstacles collisions.
机译:本文的目的是提出一种基于凝视数据和稳态视觉诱发电位(SSVEP)融合的新混合动力系统,不仅可以控制电动轮椅,而且可以解决用户的注意力分散(集中或分散注意力)的问题。为此目的,建立了多层感知神经网络,以结合来自凝视序列的相关凝视和眨眼特征以及来自枕骨和顶脑区域的脑电波特征。这项工作的动机是由于单独使用基于注视和基于SSVEP的轮椅命令技术而引起的短缺。所提出的框架基于三个主要模块:凝视模块,用于选择命令并激活闪烁的刺激。一个SSVEP模块,用于验证所选命令。并行地,分散注意力水平模块通过行为熵来估计用户的意图,并相应地验证/禁止命令。建立了实验方案,并在五个截瘫患者身上测试了原型,并与标准的SSVEP和基于注视的系统进行了比较。结果表明,新框架的性能优于传统的基于凝视和基于SSVEP的系统。根据导航时间和障碍物碰撞评估导航性能。

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