Unsupervised Multimodal 3D Medical Image Registration with Multilevel Correlation Balanced Optimization
Jiazheng Wang, Xiang Chen, Yuxi Zhang, Min Liu, Yaonan Wang, Hang, Zhang

TL;DR
This paper introduces an unsupervised multimodal 3D medical image registration method using multilevel correlation balanced optimization, addressing intraoperative deformation challenges in surgical navigation with promising results.
Contribution
The proposed method employs a multilevel pyramidal fusion mechanism with correlation analysis and convex optimization for improved multimodal image registration.
Findings
Achieved second place in Learn2Reg 2024 ReMIND2Reg task
Effective global and local deformation field optimization
Validated on multiple multimodal medical imaging datasets
Abstract
Surgical navigation based on multimodal image registration has played a significant role in providing intraoperative guidance to surgeons by showing the relative position of the target area to critical anatomical structures during surgery. However, due to the differences between multimodal images and intraoperative image deformation caused by tissue displacement and removal during surgery, effective registration of preoperative and intraoperative multimodal images faces significant challenges. To address the multimodal image registration challenges in Learn2Reg 2024, an unsupervised multimodal medical image registration method based on multilevel correlation balanced optimization (MCBO) is designed to solve these problems. First, the features of each modality are extracted based on the modality independent neighborhood descriptor, and the multimodal images are mapped to the feature…
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Taxonomy
TopicsMedical Image Segmentation Techniques · Brain Tumor Detection and Classification
