TY - GEN
T1 - LLM-Enhanced Action-Aware Multi-Modal Prompt Tuning for Image-Text Matching
AU - Tian, Mengxiao
AU - Wu, Xinxiao
AU - Yang, Shuo
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025
Y1 - 2025
N2 - Driven by large-scale contrastive vision-language pretrained models such as CLIP, recent advancements in the image-text matching task have achieved remarkable success in representation learning. Due to image-level visuallanguage alignment, CLIP falls short in understanding finegrained details such as object attributes and spatial relationships between objects. Recent efforts have attempted to compel CLIP to acquire structured visual representations by introducing prompt learning to achieve object-level alignment. While achieving promising results, they still lack the capability to perceive actions, which are crucial for describing the states or relationships between objects. Therefore, we propose to endow CLIP with fine-grained action-level understanding by introducing an LLM-enhanced actionaware multi-modal prompt-tuning method, incorporating the action-related external knowledge generated by large language models (LLMs). Specifically, we design an action triplet prompt and an action state prompt to exploit compositional semantic knowledge and state-related causal knowledge implicitly stored in LLMs. Subsequently, we propose an adaptive interaction module to aggregate attentive visual features conditioned on action-aware prompted knowledge for establishing discriminative and action-aware visual representations, which further improves the performance. Comprehensive experimental results on two benchmark datasets demonstrate the effectiveness of our method. Codes are at https://github.com/MengxiaoTian/LAMP.
AB - Driven by large-scale contrastive vision-language pretrained models such as CLIP, recent advancements in the image-text matching task have achieved remarkable success in representation learning. Due to image-level visuallanguage alignment, CLIP falls short in understanding finegrained details such as object attributes and spatial relationships between objects. Recent efforts have attempted to compel CLIP to acquire structured visual representations by introducing prompt learning to achieve object-level alignment. While achieving promising results, they still lack the capability to perceive actions, which are crucial for describing the states or relationships between objects. Therefore, we propose to endow CLIP with fine-grained action-level understanding by introducing an LLM-enhanced actionaware multi-modal prompt-tuning method, incorporating the action-related external knowledge generated by large language models (LLMs). Specifically, we design an action triplet prompt and an action state prompt to exploit compositional semantic knowledge and state-related causal knowledge implicitly stored in LLMs. Subsequently, we propose an adaptive interaction module to aggregate attentive visual features conditioned on action-aware prompted knowledge for establishing discriminative and action-aware visual representations, which further improves the performance. Comprehensive experimental results on two benchmark datasets demonstrate the effectiveness of our method. Codes are at https://github.com/MengxiaoTian/LAMP.
KW - cross-modal retrieval; image-text matching; prompt learning
UR - https://www.scopus.com/pages/publications/105044202725
U2 - 10.1109/ICCV51701.2025.01929
DO - 10.1109/ICCV51701.2025.01929
M3 - Conference contribution
AN - SCOPUS:105044202725
T3 - Proceedings of the IEEE International Conference on Computer Vision
SP - 20748
EP - 20757
BT - Proceedings - 2025 IEEE/CVF International Conference on Computer Vision, ICCV 2025
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2025 IEEE/CVF International Conference on Computer Vision, ICCV 2025
Y2 - 19 October 2025 through 23 October 2025
ER -