English

Contextual Squeeze-and-Excitation for Efficient Few-Shot Image Classification

Computer Vision and Pattern Recognition 2023-01-12 v3 Machine Learning

Abstract

Recent years have seen a growth in user-centric applications that require effective knowledge transfer across tasks in the low-data regime. An example is personalization, where a pretrained system is adapted by learning on small amounts of labeled data belonging to a specific user. This setting requires high accuracy under low computational complexity, therefore the Pareto frontier of accuracy vs. adaptation cost plays a crucial role. In this paper we push this Pareto frontier in the few-shot image classification setting with a key contribution: a new adaptive block called Contextual Squeeze-and-Excitation (CaSE) that adjusts a pretrained neural network on a new task to significantly improve performance with a single forward pass of the user data (context). We use meta-trained CaSE blocks to conditionally adapt the body of a network and a fine-tuning routine to adapt a linear head, defining a method called UpperCaSE. UpperCaSE achieves a new state-of-the-art accuracy relative to meta-learners on the 26 datasets of VTAB+MD and on a challenging real-world personalization benchmark (ORBIT), narrowing the gap with leading fine-tuning methods with the benefit of orders of magnitude lower adaptation cost.

Keywords

Cite

@article{arxiv.2206.09843,
  title  = {Contextual Squeeze-and-Excitation for Efficient Few-Shot Image Classification},
  author = {Massimiliano Patacchiola and John Bronskill and Aliaksandra Shysheya and Katja Hofmann and Sebastian Nowozin and Richard E. Turner},
  journal= {arXiv preprint arXiv:2206.09843},
  year   = {2023}
}

Comments

Advances in Neural Information Processing Systems (NeurIPS 2022)

R2 v1 2026-06-24T11:57:25.062Z