期刊论文详细信息
Cognitive Computation and Systems
Human video database for facial feature detection under spectacles with varying alertness levels: a baseline study
Nidhi Panda1  Supratim Gupta1  Mayaluri Zefree Lazarus1 
[1] National Institute of Technology;
关键词: video signal processing;    medical signal processing;    eye;    face recognition;    feature extraction;    electroencephalography;    electro-oculography;    human video database;    facial feature detection;    spectacles;    varying alertness levels;    baseline study;    pressing demand;    social media interaction;    diminished alertness;    work hours;    video-based eye movement analysis;    video-based eyelid;    motion tracking;    eye detection;    58 human subjects;    facial features;    ocular features;    eye-blinks;    alertness level detection capability;    ocular feature detection performance;   
DOI  :  10.1049/ccs.2019.0014
来源: DOAJ
【 摘 要 】

The pressing demand for workload along with social media interaction leads to diminished alertness during work hours. Researchers attempted to measure alertness level from various cues like EEG, EOG, video-based eye movement analysis, etc. Among these, video-based eyelid and iris motion tracking gained much attention in recent years. However, most of these implementations are tested on video data of subjects without spectacles. These videos do not pose a challenge for eye detection and tracking. In this work, the authors have designed an experiment to yield a video database of 58 human subjects wearing spectacles and are at different levels of alertness. Along with spectacles, they introduced variation in session, recording frame rate (fps), illumination, and time of the experiment. They carried out an analysis to detect the reliableness of facial and ocular features like yawning and eye-blinks in the context of alertness level detection capability. Also, they observe the influence of spectacles on ocular feature detection performance under spectacles and propose a simple preprocessing step to alleviate the specular reflection problem. Extensive experiments on real-world images demonstrate that the authors’ approach achieves desirable reflection suppression results within minimum execution time compared to the state-of-the-art.

【 授权许可】

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