Connectivity-based Cerebrovascular Segmentation in Time-of-Flight Magnetic Resonance Angiography
Zan Chen, Xiao Yu, Yuanjing Feng
Abstract
Accurate segmentation of cerebrovascular structures from Time-of-flight magnetic resonance angiography is vital for treating cerebrovascular diseases. However, existing methods rely on voxel categorization, leading to discontinuities in fine vessel locations. We propose a connectivity-based cerebrovascular segmentation method that considers inter-voxel relationships to alleviate this limitation. By modeling connectivity, we convert voxel classification into inter-voxel connectivity prediction. Given the sparse and widely distributed nature of cerebrovascular structures, we employ a sparse 3D Bi-level routing attention to effectively capture cerebrovascular features. To extract inter-voxel directional information, we utilize a 3D direction excitation block. Additionally, a 3D direction interactive block continuously enhances the directional information within the feature map. This directional enhanced feature map is then concatenated with the feature map from the encoder layer and fed into the decoder layer. We compare our method with current state-of-the-art cerebrovascular segmentation techniques and general medical image segmentation methods. Our method achieved a Dice Similarity Coefficient of 92.413% and 83.197% on the clinical and open cerebrovascular datasets respectively, outperforming existing approaches.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get 4aeea568-881f-4274-a0f6-d1303fa5a9c5Cited by top-tier papers1
Ask how each one uses itRelated papers
- Cerebrovascular Segmentation in TOF-MRA with Topology Regularization Adversarial ModelCheng Chen, Yunqing Chen, Shuang Song, Jianan Wang et al.ACM MM 2023 · 8 citations
- VC-Net: Deep Volume-Composition Networks for Segmentation and Visualization of Highly Sparse and Noisy Image DataYifan Wang, Guoli Yan, Haikuan Zhu, Sagar Buch et al.IEEE VIS 2020 · 40 citations
- Directional Connectivity-based Segmentation of Medical ImagesZiyun Yang, Sina FarsiuCVPR 2023
- Upping the Game: How 2D U-Net Skip Connections Flip 3D SegmentationXingru Huang, Yihao Guo, Jian Huang, Tianyun Zhang et al.NeurIPS 2024 · 8 citations
- NETracer: A Topology-Aware Iterative Tracing Approach for Tubular Structure ExtractionChao Liu, Yangbo Jiang, Nenggan ZhengICCV 2025 · 2 citations
