论文发表
学术论文与研究成果
2025
- Predictive value of aorta enhancement on computed tomographic pulmonary angiography in pulmonary embolism — PLoS One
探索性研究主动脉对比增强模式在肺栓塞预后中的预测价值。
2024
- Using 3D point cloud and graph-based neural networks to improve the estimation of pulmonary function tests from chest CT — Computers in Biology and Medicine
首次提出使用点云神经网络和图表征从肺血管估计肺功能测试,为 CT 肺功能评估开辟新范式。
- seg-metrics: a Python package to compute segmentation metrics — arXiv preprint
开源 Python 包,用于标准化医学图像分割模型的评估指标计算。支持多种格式和常见分割指标。
- Explainable fully automated CT scoring of interstitial lung disease for patients suspected of systemic sclerosis by cascaded regression neural networks and its comparison with experts — Scientific Reports
开发深度学习框架自动评估系统性硬化症相关间质性肺病的 CT 评分,达到专家级别性能并生成可解释热力图。
2023
- Automatic Pulmonary Function Estimation From Chest CT Scans Using Deep Regression Neural Networks: The Relation Between Structure and Function in Systemic Sclerosis — IEEE Access
利用深度回归神经网络从胸部 CT 自动估计肺功能,揭示系统性硬化症中结构与功能的关系。
- 2023-12-13-paper-6
2022
- Prediction of Lung CT Scores of Systemic Sclerosis by Cascaded Regression Neural Networks — Conference
SPIE Medical Imaging 2022: Computer-Aided Diagnosis.
2021
- Multi-task Semi-supervised Learning for Pulmonary Lobe Segmentation — Conference
This paper is accepted by ISBI2021.
2020
- A package to compute segmentation metrics: seg-metrics — Software
用于计算医学图像分割评估指标的 Python 包,发布在 PyPI 上。
2019
- Stability of Nonfullerene Organic Solar Cells: from Built‐in Potential and Interfacial Passivation Perspectives — Journal
This paper is the work done in Hong Kong Baptist University.
- Wideband circularly polarized dielectric resonator antenna loaded with partially reflective surface — Journal
A wideband circularly polarized (CP) dielectric resonator antenna (DRA) loaded with the partially reflective surface for gain enhancement is presented in this article. First, the DRA is excited by a microstrip line through modified stepped ring cross‐slot to generate the circular polarization. Four modified parasitic metallic plates are sequentially placed around the DRA for greatly widening the axial‐ratio bandwidth. Then, a partially reflective surface is introduced for enhancing the gain performance and further improving the CP bandwidth as well. Finally, an optimized prototype is fabricated to verify the design concept. The measured results show that the proposed DRA achieves 54.3% impedance bandwidth (VSWR<2) and 54.9% 3‐dB AR bandwidth. Besides, its average and peak gains are 10.7 dBic and 14.2 dBic, respectively. Wide CP band and high gains make the proposed DRA especially attractive for some broadband wireless applications such as satellite communication and remote sensing.