Mapping and characterizing endometrial implants by registering 2D transvaginal ultrasound to 3D pelvic magnetic resonance images

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This paper introduces a deformable registration method that maps 2D transvaginal ultrasound to 3D MRI, enabling accurate characterization and localization of endometrial implants.

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Abstract

We propose a new deformable slice-to-volume registration method to register a 2D Transvaginal Ultrasound (TVUS) to a 3D Magnetic Resonance (MR) volume. Our main goal is to find a cross-section of the MR volume such that the endometrial implants and their depth of infiltration can be mapped from TVUS to MR. The proposed TVUS-MR registration method uses contour to surface correspondences through a novel variational one-step deformable Iterative Closest Point (ICP) method. Specifically, we find a smooth deformation field while establishing point correspondences automatically. We demonstrate the accuracy of the proposed method by quantitative and qualitative tests on both semi-synthetic and clinical data. To generate semi-synthetic data sets, 3D surfaces are deformed with 4-40% degrees of deformation and then various intersection curves are obtained at 0-20° cutting angles. Results show an average mean square error of 5.7934±0.4615mm, average Hausdorff distance of 2.493±0.14mm, and average Dice similarity coefficient of 0.9750±0.0030.

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Condition tags

endometriosis

MeSH descriptors

Endometriosis Endometrium Endometrium Endosonography Magnetic Resonance Imaging Multimodal Imaging Endometriosis Endometrium Endometrium Endosonography Female Humans Imaging, Three-Dimensional Imaging, Three-Dimensional Magnetic Resonance Imaging Multimodal Imaging Pelvis Pelvis Reproducibility of Results Sensitivity and Specificity

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Source provenance

europepmc
last seen: 2026-06-22T06:15:23.361955+00:00
pubmed
last seen: 2026-05-13T22:17:46.044120+00:00
unpaywall
last seen: 2026-05-14T19:30:52.867331+00:00
License: public-domain-us · commercial use OK · attribution required
Courtesy of the U.S. National Library of Medicine