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Objective quality assessment of stereoscopic images with vertical disparity using EEG

机译:使用脑电图对具有垂直视差的立体图像进行客观质量评估

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摘要

Objective. Neurophysiological correlates of vertical disparity in 3D images are studied in an objective approach using EEG technique. These disparities are known to negatively affect the quality of experience and to cause visual discomfort in stereoscopic visualizations. Approach. We have presented four conditions to subjects: one in 2D and three conditions in 3D, one without vertical disparity and two with different vertical disparity levels. Event related potentials (ERPs) are measured for each condition and the differences between ERP components are studied. Analysis is also performed on the induced potentials in the time frequency domain. Main results. Results show that there is a significant increase in the amplitude of PI components in 3D conditions in comparison to 2D. These results are consistent with previous studies which have shown that PI amplitude increases due to the depth perception in 3D compared to 2D. However the amplitude is significantly smaller for maximum vertical disparity (3D-3) in comparison to 3D with no vertical disparity. Our results therefore suggest that the vertical disparity in 3D-3 condition decreases the perception of depth compared to other 3D conditions and the amplitude of PI component can be used as a discriminative feature. Significance. The results show that the PI component increases in amplitude due to the depth perception in the 3D stimuli compared to the 2D stimulus. On the other hand the vertical disparity in the stereoscopic images is studied here. We suggest that the amplitude of PI component is modulated with this parameter and decreases due to the decrease in the perception of depth.
机译:目的。使用EEG技术客观地研究了3D图像中垂直视差的神经生理相关性。已知这些差异会对体验质量产生负面影响,并导致立体可视化中的视觉不适。方法。我们为受试者提供了四个条件:一个在2D中,三个在3D中,其中一个没有垂直视差,而两个则具有不同的垂直视差水平。针对每种情况测量事件相关电位(ERP),并研究ERP组件之间的差异。还对时频域中的感应电势进行分析。主要结果。结果表明,与2D相比,在3D条件下PI分量的幅度显着增加。这些结果与先前的研究一致,后者表明PI振幅由于与2D相比在3D中的深度感知而增加。但是,与没有垂直视差的3D相比,最大垂直视差(3D-3)的幅度明显较小。因此,我们的结果表明,与其他3D条件相比,3D-3条件下的垂直视差会降低对深度的感知,并且PI分量的振幅可用作判别特征。意义。结果表明,与2D刺激相比,由于3D刺激中的深度感知,PI分量的幅度增加。另一方面,这里研究立体图像中的垂直视差。我们建议使用此参数来调制PI分量的振幅,并且由于深度感知的减少而减小。

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  • 来源
    《Journal of neural engineering》 |2017年第4期|046009.1-046009.13|共13页
  • 作者单位

    Department of Video Coding & Analytics, Fraunhofer Heinrich Hertz Institute, Berlin, Germany;

    Department of Video Coding & Analytics, Fraunhofer Heinrich Hertz Institute, Berlin, Germany;

    Machine Learning Group, Technische Universitat Berlin, Berlin, Germany,Department of Brain and Cognitive Engineering, Korea University, Seoul, Republic of Korea;

    Department of Video Coding & Analytics, Fraunhofer Heinrich Hertz Institute, Berlin, Germany;

    Department of Neurophysiology and Pathophysiology, University Medical Center Hamburg-Eppendorf, Hamburg, Germany;

    Department of Video Coding & Analytics, Fraunhofer Heinrich Hertz Institute, Berlin, Germany,Image Communication Group, Technische Universitat Berlin, Berlin, Germany;

    Department of Neurology and Clinical Neurophysiology, Neurophysics Group, Charit6, Berlin, Germany;

    Department of Video Coding & Analytics, Fraunhofer Heinrich Hertz Institute, Berlin, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    quality of experience; objective assessment; EEG analysis; stereoscopic images; vertical disparity;

    机译:体验质量;客观评估;脑电图分析;立体图像;垂直差距;

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