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首页> 外文期刊>IEEE transactions on neural systems and rehabilitation engineering >Investigate the 3D Visual Fatigue Using Modified Depth-Related Visual Evoked Potential Paradigm
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Investigate the 3D Visual Fatigue Using Modified Depth-Related Visual Evoked Potential Paradigm

机译:使用修改的深度相关的视觉诱发潜在范式来研究3D视觉疲劳

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摘要

Prolonged viewing of 3D content may result in severe fatigue symptoms, giving negative user experience thus hindering the development of 3D industry. For 3D visual fatigue evaluation, previous studies focused on exploring the changes of frequency-domain features in EEG for various fatigue degrees. However, their time-domain features were scarcely investigated. In this study, a modified paradigm with a random disparities order is adopted to evoke the depth-related visual evoked potentials (DVEPs). Then the characteristics of the DVEPs components for various fatigue degrees are compared using one-way repeated-measurement ANOVA. Point-by-point permutation statistics revealed sample points from 100ms to 170ms - including P1 and N1 - in sensors Pz and P4 changed significantly with visual fatigue. More specifically, we find that the amplitudes of P1 and N1 change significantly when visual fatigue increases. Additionally, independent component analysis identify P1 and N1 which originate from posterior cingulate cortex are associated statistically with 3D visual fatigue. Our results indicate there is a significant correlation between 3D visual fatigue and P1 amplitude, as well as N1, of DVEPs on right parietal areas. We believe the characteristics (e.g., amplitude and latency) of identified components may be the indicators of 3D visual fatigue evaluation. Furthermore, we argue that 3D visual fatigue may be associated with the activities decrease of the attention and the processing capacity of disparity.
机译:3D含量的长时间观察可能导致严重的疲劳症状,给出负面的用户体验,从而阻碍了3D行业的发展。对于3D视觉疲劳评估,以前的研究侧重于探索脑电图频率域特征的变化,以实现各种疲劳度。但是,它们的时域特征几乎被调查。在该研究中,采用具有随机差异顺序的修改的范例来唤起与井深的视觉诱发电位(DVEPS)唤起。然后使用单向重复测量ANOVA比较各种疲劳度的DVEPS组件的特性。点对点置换统计显示从100ms到170ms的采样点 - 包括P1和N1 - 在传感器PZ和P4中显着改变了视觉疲劳。更具体地,当视觉疲劳增加时,我们发现P1和N1的幅度显着变化。另外,独立的组分分析识别源自铰接皮质的P1和N​​1统计相关的3D视觉疲劳。我们的结果表明,在右间区域上的DVEPS的3D视觉疲劳和P1幅度与N1之间存在显着相关性。我们认为所识别组件的特征(例如,幅度和潜伏期)可以是3D视觉疲劳评估的指标。此外,我们认为3D视觉疲劳可能与活动的关注和视差的处理能力的活动相关联。

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