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Self-Supervised Video Representation Learning via Latent Time Navigation

About

Self-supervised video representation learning aimed at maximizing similarity between different temporal segments of one video, in order to enforce feature persistence over time. This leads to loss of pertinent information related to temporal relationships, rendering actions such as `enter' and `leave' to be indistinguishable. To mitigate this limitation, we propose Latent Time Navigation (LTN), a time-parameterized contrastive learning strategy that is streamlined to capture fine-grained motions. Specifically, we maximize the representation similarity between different video segments from one video, while maintaining their representations time-aware along a subspace of the latent representation code including an orthogonal basis to represent temporal changes. Our extensive experimental analysis suggests that learning video representations by LTN consistently improves performance of action classification in fine-grained and human-oriented tasks (e.g., on Toyota Smarthome dataset). In addition, we demonstrate that our proposed model, when pre-trained on Kinetics-400, generalizes well onto the unseen real world video benchmark datasets UCF101 and HMDB51, achieving state-of-the-art performance in action recognition.

Di Yang, Yaohui Wang, Quan Kong, Antitza Dantcheva, Lorenzo Garattoni, Gianpiero Francesca, Francois Bremond• 2023

Related benchmarks

TaskDatasetResultRank
Action RecognitionToyota SmartHome (TSH) (CV2)
Accuracy54.6
60
Action RecognitionToyota Smarthome CS
Accuracy65.9
58
Fibrillation diagnosisShort-term cardiac video
AUC0.705
16
CAD diagnosisShort-term cardiac video
AUC0.694
16
LVEF estimationShort-term cardiac video
MAE3.88
16
Cardiac Output estimationShort-term cardiac video
MAE1.68
16
Scarring and Fibrosis PrognosisLongitudinal retinal OCT (test)
AUC72.9
16
Late Wet AMD PrognosisLongitudinal retinal OCT (test)
AUC0.648
16
Late Dry AMD PrognosisLongitudinal retinal OCT (test)
AUC0.631
16
Late vs. Early AMD DiagnosisLongitudinal retinal OCT (test)
AUC85.7
16
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