[9] Zachary Englhardt, Chengqian Ma, Margaret E Morris, Chun-Cheng Chang, Xuhai “Orson” Xu, Lianhui Qin, Daniel McDuff, Xin Liu, Shwetak Patel, and Vikram Iyer. 2024. From Classification to Clinical Insights: Towards Analyzing and Reasoning About Mobile and Behavioral Health Data With Large Language Models. Proceedings of the ACM on Interactive, Mobile, Wearable and Ubiquitous Technologies 8, 2 (2024), 1–25【17:9†source】.
[11] Cathy Mengying Fang, Valdemar Danry, Nathan Whitmore, Andria Bao, Andrew Hutchison, Cayden Pierce, and Pattie Maes. 2024. PhysioLLM: Supporting Personalized Health Insights with Wearables and Large Language Models. arXiv preprint arXiv:2406.19283 (2024)【17:3†source】.
[17] Sheikh Asif Imran, Mohammad Nur Hossain Khan, Subrata Biswas, and Bashima Islam. 2024. LLaSA: Large Multimodal Agent for Human Activity Analysis Through Wearable Sensors. arXiv preprint arXiv:2406.14498 (2024)【17:4†source】.
[24] Jamie McQuire, Paul Watson, Nick Wright, Hugo Hiden, and Michael Catt. 2023. A Data Efficient Vision Transformer for Robust Human Activity Recognition from the Spectrograms of Wearable Sensor Data. In 2023 IEEE Statistical Signal Processing Workshop (SSP). IEEE, 364–368【17:6†source】.
[34] Huaijun Wang, Jing Zhao, Junhuai Li, Ling Tian, Pengjia Tu, Ting Cao, Yang An, Kan Wang, and Shancang Li. 2020. Wearable Sensor-Based Human Activity Recognition Using Hybrid Deep Learning Techniques. Security and communication Networks 2020, 1 (2020), 2132138【17:7†source】.
[1] Fayez Alharbi, Lahcen Ouarbya, and Jamie A Ward. 2022. Comparing sampling strategies for tackling imbalanced data in human activity recognition. Sensors 22, 4 (2022), 1373 .
[17] Sheikh Asif Imran, Mohammad Nur Hossain Khan, Subrata Biswas, and Bashima Islam. 2024. LLaSA: Large Multimodal Agent for Human Activity Analysis Through Wearable Sensors. arXiv preprint arXiv:2406.14498 (2024) .
[18] Sijie Ji, Xinzhe Zheng, and Chenshu Wu. 2024. HARGPT: Are LLMs Zero-Shot Human Activity Recognizers? arXiv preprint arXiv:2403.02727 (2024) .
[29] Sungho Suh, Vitor Fortes Rey, and Paul Lukowicz. 2023. Tasked: transformer-based adversarial learning for human activity recognition using wearable sensors via self-knowledge distillation. Knowledge-Based Systems 260 (2023) .