Standardized Evaluation of Automatic Methods for Perivascular Spaces Segmentation in MRI -- MICCAI 2024 Challenge Results
Yilei Wu, Yichi Zhang, Zijian Dong, Fang Ji, An Sen Tan, Gifford Tan, Sizhao Tang, Huijuan Chen, Zijiao Chen, Eric Kwun Kei Ng, Jose Bernal, Hang Min, Ying Xia, Ines Vati, Liz Cooper, Xiaoyu Hu, Yuchen Pei, Yutao Ma, Victor Nozais, Ami Tsuchida, Pierre-Yves Herv\'e

TL;DR
This paper reports on the MICCAI 2024 EPVS Challenge, which evaluates automated MRI segmentation methods for perivascular spaces, highlighting current performance and challenges in cross-site generalization.
Contribution
It introduces a standardized benchmark dataset and evaluation framework for EPVS segmentation, fostering development of more robust deep learning algorithms.
Findings
Top methods achieved high accuracy on seen datasets
Significant performance drop on unseen data highlights domain shift issues
Ensemble and transformer-based models showed promising results
Abstract
Perivascular spaces (PVS), when abnormally enlarged and visible in magnetic resonance imaging (MRI) structural sequences, are important imaging markers of cerebral small vessel disease and potential indicators of neurodegenerative conditions. Despite their clinical significance, automatic enlarged PVS (EPVS) segmentation remains challenging due to their small size, variable morphology, similarity with other pathological features, and limited annotated datasets. This paper presents the EPVS Challenge organized at MICCAI 2024, which aims to advance the development of automated algorithms for EPVS segmentation across multi-site data. We provided a diverse dataset comprising 100 training, 50 validation, and 50 testing scans collected from multiple international sites (UK, Singapore, and China) with varying MRI protocols and demographics. All annotations followed the STRIVE protocol to…
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Taxonomy
TopicsCerebrospinal fluid and hydrocephalus · Fetal and Pediatric Neurological Disorders · Intracerebral and Subarachnoid Hemorrhage Research
