Zhong Wang
Orcid: 0000-0002-8648-9999Affiliations:
- Lanzhou University, School of Information Science and Engineering, Lanzhou, China
According to our database1,
Zhong Wang authored at least 15 papers
between 2024 and 2026.
Collaborative distances:
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Bibliography
2026
Hierarchical cross-attention guided deformable registration with multi-level feature fusion for medical images.
Neural Networks, 2026
Deepest-only integration of vision and textual semantics in expectation-maximization space for generalizable medical image segmentation.
Inf. Fusion, 2026
Frequency view feature interpolation and disentanglement for single-source domain generalization in retinal vessel segmentation.
Biomed. Signal Process. Control., 2026
FHSS-Net: A novel instance segmentation network for multi-class fetal heart structures via global context and multi-scale learning.
Biomed. Signal Process. Control., 2026
Disentangled contrastive learning with adaptive resampling for generalizable joint optic disc and cup segmentation.
Biomed. Signal Process. Control., 2026
2025
MFM-DA: Instance-Aware Adaptor and Hierarchical Alignment for Efficient Domain Adaptation in Medical Foundation Models.
CoRR, March, 2025
Multi-receptive field feature disentanglement with Distance-Aware Gaussian Brightness Augmentation for single-source domain generalization in medical image segmentation.
Neurocomputing, 2025
Multi-attribute balanced dataset generation framework AutoSyn and KinFace Channel-Spatial Feature Extractor for kinship recognition.
Neurocomputing, 2025
Localized Adaptive Style Mixing for feature statistics manipulation in medical image translation with limited Data.
Expert Syst. Appl., 2025
Structure-aware single-source generalization with pixel-level disentanglement for joint optic disc and cup segmentation.
Biomed. Signal Process. Control., 2025
Single Domain Generalization for Multimodal Cross-Cancer Prognosis via Dirac Rebalancer and Distribution Entanglement.
Proceedings of the 33rd ACM International Conference on Multimedia, 2025
2024
Modality Consistency-Guided Contrastive Learning for Wearable-Based Human Activity Recognition.
IEEE Internet Things J., June, 2024
J. Real Time Image Process., May, 2024
Biomed. Signal Process. Control., February, 2024
Application of an interpretable Raman-Spectral classification model based on a transposed convolution and attention mechanism to tumor-tissue screening.
Appl. Soft Comput., 2024