This paper introduces a video representation based on dense trajectories and motion boundary descriptors. Trajectories capture the local motion information of the video. A dense representation guarantees a good coverage of foreground motion as well as of the surrounding context. A state-of-the-art optical flow algorithm enables a robust and efficient extraction of the dense trajectories. As descriptors we extract features aligned with the trajectories to characterize shape (point coordinates), appearance (histograms of oriented gradients) and motion (histograms of optical flow). Additionally, we introduce a descriptor based on motion boundary histograms (MBH) which rely on differential optical flow. The MBH descriptor shows to consistently ...
Recently dense trajectories were shown to be an efficient video representation for action recognitio...
International audienceSeveral recent works on action recognition have attested the importance of exp...
Recently, a video representation based on dense trajectories has been shown to outperform other huma...
This paper introduces a video representation based on dense trajectories and motion boundary descrip...
International audienceThis paper introduces a video representation based on dense trajectories and m...
This paper introduces a video representation based on dense trajectories and motion boundary descrip...
International audienceThis paper introduces a video representation based on dense trajectories and m...
International audienceFeature trajectories have shown to be efficient for representing videos. Typic...
International audienceFeature trajectories have shown to be efficient for representing videos. Typic...
International audienceFeature trajectories have shown to be efficient for representing videos. Typic...
Feature trajectories have shown to be efficient for rep-resenting videos. Typically, they are extrac...
International audienceRecently dense trajectories were shown to be an efficient video representation...
International audienceRecently dense trajectories were shown to be an efficient video representation...
International audienceThis paper introduces a state-of-the-art video representation and applies it t...
International audienceThis paper introduces a state-of-the-art video representation and applies it t...
Recently dense trajectories were shown to be an efficient video representation for action recognitio...
International audienceSeveral recent works on action recognition have attested the importance of exp...
Recently, a video representation based on dense trajectories has been shown to outperform other huma...
This paper introduces a video representation based on dense trajectories and motion boundary descrip...
International audienceThis paper introduces a video representation based on dense trajectories and m...
This paper introduces a video representation based on dense trajectories and motion boundary descrip...
International audienceThis paper introduces a video representation based on dense trajectories and m...
International audienceFeature trajectories have shown to be efficient for representing videos. Typic...
International audienceFeature trajectories have shown to be efficient for representing videos. Typic...
International audienceFeature trajectories have shown to be efficient for representing videos. Typic...
Feature trajectories have shown to be efficient for rep-resenting videos. Typically, they are extrac...
International audienceRecently dense trajectories were shown to be an efficient video representation...
International audienceRecently dense trajectories were shown to be an efficient video representation...
International audienceThis paper introduces a state-of-the-art video representation and applies it t...
International audienceThis paper introduces a state-of-the-art video representation and applies it t...
Recently dense trajectories were shown to be an efficient video representation for action recognitio...
International audienceSeveral recent works on action recognition have attested the importance of exp...
Recently, a video representation based on dense trajectories has been shown to outperform other huma...