MIAS-SAM: Medical Image Anomaly Segmentation without thresholding
Journal:
arXiv
Published Date:
May 28, 2025
Abstract
This paper presents MIAS-SAM, a novel approach for the segmentation of
anomalous regions in medical images. MIAS-SAM uses a patch-based memory bank to
store relevant image features, which are extracted from normal data using the
SAM encoder. At inference time, the embedding patches extracted from the SAM
encoder are compared with those in the memory bank to obtain the anomaly map.
Finally, MIAS-SAM computes the center of gravity of the anomaly map to prompt
the SAM decoder, obtaining an accurate segmentation from the previously
extracted features. Differently from prior works, MIAS-SAM does not require to
define a threshold value to obtain the segmentation from the anomaly map.
Experimental results conducted on three publicly available datasets, each with
a different imaging modality (Brain MRI, Liver CT, and Retina OCT) show
accurate anomaly segmentation capabilities measured using DICE score. The code
is available at: https://github.com/warpcut/MIAS-SAM