Temporal Information
Temporal information processing focuses on effectively integrating time-dependent data into various computational tasks, aiming to improve accuracy and understanding of dynamic systems. Current research emphasizes the development of models that efficiently capture temporal dependencies, with a focus on transformer architectures, recurrent neural networks (like LSTMs), and graph-based methods for handling complex spatiotemporal relationships in diverse data types, including videos, sensor networks, and time series. This research is significant for advancing fields like video summarization, action recognition, traffic prediction, and medical image analysis, where accurate modeling of temporal dynamics is crucial for improved performance and interpretability.
Papers
EEGDiR: Electroencephalogram denoising network for temporal information storage and global modeling through Retentive Network
Bin Wang, Fei Deng, Peifan Jiang
TiBiX: Leveraging Temporal Information for Bidirectional X-ray and Report Generation
Santosh Sanjeev, Fadillah Adamsyah Maani, Arsen Abzhanov, Vijay Ram Papineni, Ibrahim Almakky, Bartłomiej W. Papież, Mohammad Yaqub