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Toward Training-Free Zero-Shot Anomaly Detection in 3D Medical Images: A Batch-Based Approach Using 2D Foundation Models

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Zero-shot anomaly detection (ZSAD) is attractive for medical imaging because clinical systems must handle heterogeneous acquisition protocols, changing patient populations, and pathologies for which annotated training data may be unavailable. Most existing zero-shot anomaly detection methods are designed for 2D images, and their direct extension to 3D medical volumes is limited by the scarcity of large-scale volumetric foundation models or by the difficulty of utilizing volumetric context. We propose CS3F, a training-free batch-based framework for ZSAD in 3D medical images using 2D foundation models. Each volume is decomposed along multiple anatomical axes and encoded slice-wise by a 2D vision transformer. These are then converted into localized volumetric tokens by pooling neighboring slice features. Anomaly scores are obtained from cross-subject mutual similarity: tokens that lack close analogues in other subjects are assigned higher anomaly scores. To reduce the attenuation of focal lesion signals caused by depth pooling, we introduce a coarse-to-fine tokenization strategy that enables fine-resolution volumetric scoring without exhaustive matching. CS3F is evaluated on brain MRI across metastases, glioma, and stroke, as well as validated on lung CT to test generalizability beyond atlas-aligned brain MRI. The results show that frozen 2D foundation models can support anomaly localization in 3D medical images, and that the benefit of fine tokenization depends strongly on lesion contrast and imaging modality.

Tai Le-Gia• 2026

Related benchmarks

TaskDatasetResultRank
Voxel-level anomaly segmentationBraTS-METS T2w
AUROC98.3
8
Voxel-level anomaly segmentationBraTS-METS T1w
AUROC95.3
8
Voxel-level anomaly segmentationBraTS-GLI T2w
AUROC97.4
8
Voxel-level anomaly segmentationATLAS T1w R2.0
AUROC96.2
8
Patient-level anomaly detectionBraTS-METS T2w
AUROC94.9
8
Patient-level anomaly detectionBraTS-METS T1w
AUROC97
8
Patient-level anomaly detectionBraTS-GLI T2w
AUROC99.2
8
Patient-level anomaly detectionATLAS T1w R2.0
AUROC88.6
8
3D Anomaly DetectionLung CT (LIDC-IDRI and MSD Lung) (test)
Patient-level AUROC80.6
5
3D Anomaly LocalizationLung CT (LIDC-IDRI and MSD Lung) (test)
Voxel-level AUROC99
5
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