VLDB 2026 Research / reviewers in the wild / expert
Daniel S. W. Ting
dblp:243/1966 · also Daniel Shu Wei Ting
· DBLP profile ↗
7ranked-venue papers
0as first author
5since 2021 · last 2024
0000-0003-2264-7174ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Applied, interdisciplinary, general and emerging computing · 6 · 5 since 2021Graphics, computer vision, multimedia, augmented reality and games · 4 · 2 since 2021Artificial intelligence and machine learning · 1
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2024 | Geometric Correspondence-Based Multimodal Learning for Ophthalmic Image AnalysisabstractColor fundus photography (CFP) and Optical coherence tomography (OCT) images are two of the most widely used modalities in the clinical diagnosis and management of retinal diseases. Despite the widespread use of multimodal imaging in clinical practice, few methods for automated diagnosis of eye diseases utilize correlated and complementary information from multiple modalities effectively. This paper explores how to leverage the information from CFP and OCT images to improve the automated diagnosis of retinal diseases. We propose a novel multimodal learning method, named geometric correspondence-based multimodal learning network (GeCoM-Net), to achieve the fusion of CFP and OCT images. Specifically, inspired by clinical observations, we consider the geometric correspondence between the OCT slice and the CFP region to learn the correlated features of the two modalities for robust fusion. Furthermore, we design a new feature selection strategy to extract discriminative OCT representations by automatically selecting the important feature maps from OCT slices. Unlike the existing multimodal learning methods, GeCoM-Net is the first method that formulates the geometric relationships between the OCT slice and the corresponding region of the CFP image explicitly for CFP and OCT fusion. Experiments have been conducted on a large-scale private dataset and a publicly available dataset to evaluate the effectiveness of GeCoM-Net for diagnosing diabetic macular edema (DME), impaired visual acuity (VA) and glaucoma. The empirical results show that our method outperforms the current state-of-the-art multimodal learning methods by improving the AUROC score 0.4%, 1.9% and 2.9% for DME, VA and glaucoma detection, respectively. Yan Wang 0015, Liangli Zhen, Tien-En Tan, Huazhu Fu, Yangqin Feng, Zizhou Wang, Xinxing Xu, Rick Siow Mong Goh, Yipin Ng, Claire Calhoun, Gavin Siew Wei Tan, Jennifer K. Sun, Yong Liu 0026, Daniel S. W. Ting |
IEEE Trans. Medical Imaging | 14 |
| 2023 | Federated and distributed learning applications for electronic health records and structured medical data: a scoping reviewabstractOBJECTIVES: Federated learning (FL) has gained popularity in clinical research in recent years to facilitate privacy-preserving collaboration. Structured data, one of the most prevalent forms of clinical data, has experienced significant growth in volume concurrently, notably with the widespread adoption of electronic health records in clinical practice. This review examines FL applications on structured medical data, identifies contemporary limitations, and discusses potential innovations. MATERIALS AND METHODS: We searched 5 databases, SCOPUS, MEDLINE, Web of Science, Embase, and CINAHL, to identify articles that applied FL to structured medical data and reported results following the PRISMA guidelines. Each selected publication was evaluated from 3 primary perspectives, including data quality, modeling strategies, and FL frameworks. RESULTS: Out of the 1193 papers screened, 34 met the inclusion criteria, with each article consisting of one or more studies that used FL to handle structured clinical/medical data. Of these, 24 utilized data acquired from electronic health records, with clinical predictions and association studies being the most common clinical research tasks that FL was applied to. Only one article exclusively explored the vertical FL setting, while the remaining 33 explored the horizontal FL setting, with only 14 discussing comparisons between single-site (local) and FL (global) analysis. CONCLUSIONS: The existing FL applications on structured medical data lack sufficient evaluations of clinically meaningful benefits, particularly when compared to single-site analyses. Therefore, it is crucial for future FL applications to prioritize clinical motivations and develop designs and methodologies that can effectively support and aid clinical practice and research. Siqi Li 0004, Pinyan Liu, Gustavo G. Nascimento, Fabio Renato Manzolli Leite, Bibhas Chakraborty, Chuan Hong, Yilin Ning, Feng Xie 0004, Zhen Ling Teo, Daniel S. W. Ting, Hamed Haddadi 0001, Marcus Eng Hock Ong, Marco Aurélio Peres, Nan Liu 0003 |
J. Am. Medical Informatics Assoc. | 11 |
| 2022 | A Novel Interpretable Machine Learning System to Generate Clinical Risk Scores: An Application for Predicting Early Mortality or Unplanned Readmission in A Retrospective Cohort Study
Yilin Ning, Siqi Li 0004, Marcus Eng Hock Ong, Feng Xie 0004, Bibhas Chakraborty, Daniel S. W. Ting, Nan Liu 0003 |
AMIA | 6 |
| 2021 | Few-Shot Domain Adaptation with Polymorphic Transformers
Shaohua Li 0003, Xiuchao Sui, Huazhu Fu, Xiangde Luo, Yangqin Feng, Xinxing Xu, Yong Liu 0026, Daniel S. W. Ting, Rick Siow Mong Goh |
MICCAI (2) | 9 |
| 2021 | Partially-Supervised Learning for Vessel Segmentation in Ocular Images
Yanyu Xu 0001, Xinxing Xu, Shenghua Gao, Rick Siow Mong Goh, Daniel S. W. Ting, Yong Liu 0026 |
MICCAI (1) | 6 |
| 2019 | Feature Isolation for Hypothesis Testing in Retinal Imaging: An Ischemic Stroke Prediction Case StudyabstractIschemic stroke is a leading cause of death and long-term disability that is difficult to predict reliably. Retinal fundus photography has been proposed for stroke risk assessment, due to its non-invasiveness and the similarity between retinal and cerebral microcirculations, with past studies claiming a correlation between venular caliber and stroke risk. However, it may be that other retinal features are more appropriate. In this paper, extensive experiments with deep learning on six retinal datasets are described. Feature isolation involving segmented vascular tree images is applied to establish the effectiveness of vessel caliber and shape alone for stroke classification, and dataset ablation is applied to investigate model generalizability on unseen sources. The results suggest that vessel caliber and shape could be indicative of ischemic stroke, and sourcespecific features could influence model performance. Gilbert Lim, Zhan Wei Lim, Dejiang Xu, Daniel S. W. Ting, Tien Yin Wong, Mong-Li Lee, Wynne Hsu |
AAAI | 4 |
| 2019 | Multi-Instance Multi-Scale CNN for Medical Image Classification
Shaohua Li 0003, Yong Liu 0026, Xiuchao Sui, Cheng Chen 0008, Gabriel Tjio, Daniel S. W. Ting, Rick Siow Mong Goh |
MICCAI (4) | 6 |