nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
Adapting language models for mental health analysis on social media
|
Aragón, Mario Ezra |
|
|
168 |
C |
p. |
artikel |
2 |
A generalized LLMs framework to support public health financing through probabilistic predictions and uncertainty quantification
|
Guariso, Daniele |
|
|
168 |
C |
p. |
artikel |
3 |
AI-based methods for diagnosing and grading diabetic retinopathy: A comprehensive review
|
Saleh, Ibrahim |
|
|
168 |
C |
p. |
artikel |
4 |
AI-based mining of biomedical literature: Applications for drug repurposing for the treatment of dementia
|
Sikirzhytskaya, Aliaksandra |
|
|
168 |
C |
p. |
artikel |
5 |
AMOTS: Partially supervised framework for abdominal multi-organ and tumor segmentation via aspect-aware complementary
|
Zhang, Zengmin |
|
|
168 |
C |
p. |
artikel |
6 |
ContraDTI: Improved drug–target interaction prediction via multi-view contrastive learning
|
Liao, Zhirui |
|
|
168 |
C |
p. |
artikel |
7 |
DDintensity: Addressing imbalanced drug-drug interaction risk levels using pre-trained deep learning model embeddings
|
Xie, Weidun |
|
|
168 |
C |
p. |
artikel |
8 |
Deep learning for automatic ICD coding: Review, opportunities and challenges
|
Li, Xiaobo |
|
|
168 |
C |
p. |
artikel |
9 |
Editorial Board
|
|
|
|
168 |
C |
p. |
artikel |
10 |
HMEA: A hierarchical medical knowledge graph entity alignment model fusing multi-aspect information
|
Wang, Weiguang |
|
|
168 |
C |
p. |
artikel |
11 |
Identifying signatures of image phenotypes to track treatment response in liver disease
|
Perkonigg, Matthias |
|
|
168 |
C |
p. |
artikel |
12 |
IHE-Net:Hidden feature discrepancy fusion and triple consistency training for semi-supervised medical image segmentation
|
Ju, Mengyi |
|
|
168 |
C |
p. |
artikel |
13 |
KGDB-DDI:Knowledge graph-based drug background data fusion model for drug–drug interaction prediction
|
Zhao, Changpeng |
|
|
168 |
C |
p. |
artikel |
14 |
LLM-based approaches for automated vocabulary mapping between SIGTAP and OMOP CDM concepts
|
de Barros Vanzin, Vinícius João |
|
|
168 |
C |
p. |
artikel |
15 |
Mapping the brain: AI-driven radiomic approaches to mental disorders
|
Moumgiakmas, Seraphim S. |
|
|
168 |
C |
p. |
artikel |
16 |
Medical radiology report generation: A systematic review of current deep learning methods, trends, and future directions
|
Izhar, Amaan |
|
|
168 |
C |
p. |
artikel |
17 |
[No title]
|
Jogo, Fransiskus Serfian |
|
|
168 |
C |
p. |
artikel |
18 |
Ontology-based student testing through clinical guidelines: An AI approach
|
Bottrighi, Alessio |
|
|
168 |
C |
p. |
artikel |
19 |
Reporting guideline for chatbot health advice studies: The CHART statement
|
Huo, Bright |
|
|
168 |
C |
p. |
artikel |
20 |
The role of natural language processing in improving cancer care: A scoping review with narrative synthesis
|
Sun, Mengxuan |
|
|
168 |
C |
p. |
artikel |
21 |
Toward fair medical advice: Addressing and mitigating bias in large language model-based healthcare applications
|
Lu, Haohui |
|
|
168 |
C |
p. |
artikel |
22 |
Uncovering the genetic basis of glioblastoma heterogeneity through multimodal analysis of whole slide images and RNA sequencing data
|
Berjaoui, Ahmad |
|
|
168 |
C |
p. |
artikel |