首页> 外文期刊>Clinical EEG and neuroscience: official journal of the EEG and Clinical Neuroscience Society (ENCS) >Modulation of human visual evoked potentials in 3-dimensional perception after stimuli produced with an integral imaging method.
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Modulation of human visual evoked potentials in 3-dimensional perception after stimuli produced with an integral imaging method.

机译:人类的视觉诱发电位的调制后产生的三维成像感知的积分成像方法。

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We investigated the neurophysiological correlates of stereoscopic 3-dimensional (3-D) depth perception by studying human visual evoked potentials (VEPs) with an integral imaging method characterized by horizontal but not vertical disparity. The VEPs were recorded in 10 healthy men under 4 conditions. In condition I, stimuli A (flat, 2-dimensional [2-D] image) and B (concave 3-D image) were presented at random. In condition II, stimuli A and C (convex 3-D image) were presented at random. In condition III, stimuli B and C were presented at random. In condition IV, stimuli A, B, and C were presented at random. The data for flat VEPs to stimulus A were combined in conditions I and II. The data for concave VEPs to stimulus B were combined in conditions I and III. The data for convex VEPs to stimulus C were combined in conditions II and III. When 2-way analysis of variance (ANOVA) for 2 factors, stimulus conditions (flat VEPs, concave VEPs, and convex VEPs) and electrode positions, was applied for VEP data, the N1 and N2 peak amplitudes differed significantly among the 3 stimulus conditions. In condition IV, the N1 peak amplitudes differed significantly among the 3 stimuli. Multiple comparisons followed by Bonferroni adjustment did not detect differences in the N1 peak amplitude between stimuli A and B, between stimuli A and C, or between stimuli B and C. We concluded that VEPs to concave or convex 3-D stimuli were significantly different from VEPs to flat 2-D stimuli. This is the first report showing modulation of human VEPs in 3-D perception with an integral imaging method.
机译:我们通过以水平而非垂直差异为特征的积分成像方法研究人类视觉诱发电位(VEP),研究了立体3维(3-D)深度感知的神经生理相关性。在4种情况下,在10名健康男性中记录了VEP。在条件I下,随机呈现刺激A(平面二维[2-D]图像)和B(凹面3-D图像)。在条件II中,随机出现刺激A和C(凸3D图像)。在条件III中,刺激B和C随机出现。在条件IV中,随机出现刺激A,B和C。在条件I和条件II中,对刺激A的平坦VEP数据进行了合并。在条件I和条件III下,将凹形VEP刺激B的数据合并在一起。在条件II和条件III中,结合了凸VEP对刺激C的数据。当对2个因素,刺激条件(平坦VEP,凹形VEP和凸形VEP)和电极位置进行2维方差分析(ANOVA)时,VEP数据的N1和N2峰值幅度在3种刺激条件之间存在显着差异。在条件IV下,三种刺激之间的N1峰值幅度明显不同。多重比较后进行Bonferroni调整,未检测到刺激A和B之间,刺激A和C之间,或刺激B和C之间的N1峰幅度存在差异。我们得出结论,凹或凸3-D刺激的VEP与VEP对平面二维刺激。这是第一个报告,显示了使用集成成像方法在3-D感知中对人类VEP的调制。

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