Adding a multi-stage cross-scale attention module to U-Net improves small stroke lesion segmentation on ATLAS v2.0, with the best ensemble achieving the highest Dice and F1 scores.
MAPPING: Model Average with Post-processing for Stroke Lesion Segmentation
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
Accurate stroke lesion segmentation plays a pivotal role in stroke rehabilitation research, to provide lesion shape and size information which can be used for quantification of the extent of the stroke and to assess treatment efficacy. Recently, automatic segmentation algorithms using deep learning techniques have been developed and achieved promising results. In this report, we present our stroke lesion segmentation model based on nnU-Net framework, and apply it to the Anatomical Tracings of Lesions After Stroke (ATLAS v2.0) dataset. Furthermore, we describe an effective post-processing strategy that can improve some segmentation metrics. Our method took the first place in the 2022 MICCAI ATLAS Challenge with an average Dice score of 0.6667, Lesion-wise F1 score of 0.5643, Simple Lesion Count score of 4.5367, and Volume Difference score of 8804.9102. Our code and trained model weights are publicly available at https://github.com/King-HAW/ATLAS-R2-Docker-Submission.
citation-role summary
citation-polarity summary
fields
eess.IV 1years
2025 1verdicts
CONDITIONAL 1roles
baseline 1polarities
baseline 1representative citing papers
citing papers explorer
-
Stroke Lesion Segmentation using Multi-Stage Cross-Scale Attention
Adding a multi-stage cross-scale attention module to U-Net improves small stroke lesion segmentation on ATLAS v2.0, with the best ensemble achieving the highest Dice and F1 scores.