A 3D ResNet with reweighted loss and logit adjustment reaches 65.38% accuracy on a private 389-patient CT dataset for three-class T-score prediction.
Long-tailed Recognition by Learning from Latent Categories
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
In this work, we address the challenging task of long-tailed image recognition. Previous long-tailed recognition methods commonly focus on the data augmentation or re-balancing strategy of the tail classes to give more attention to tail classes during the model training. However, due to the limited training images for tail classes, the diversity of tail class images is still restricted, which results in poor feature representations. In this work, we hypothesize that common latent features among the head and tail classes can be used to give better feature representation. Motivated by this, we introduce a Latent Categories based long-tail Recognition (LCReg) method. Specifically, we propose to learn a set of class-agnostic latent features shared among the head and tail classes. Then, we implicitly enrich the training sample diversity via applying semantic data augmentation to the latent features. Extensive experiments on five long-tailed image recognition datasets demonstrate that our proposed LCReg is able to significantly outperform previous methods and achieve state-of-the-art results.
citation-role summary
citation-polarity summary
fields
cs.CV 1years
2025 1verdicts
REJECT 1roles
background 1polarities
background 1representative citing papers
citing papers explorer
-
MedConv: Convolutions Beat Transformers on Long-Tailed Bone Density Prediction
A 3D ResNet with reweighted loss and logit adjustment reaches 65.38% accuracy on a private 389-patient CT dataset for three-class T-score prediction.