Mahmoud Elbattah

dblp:166/4976 · DBLP profile ↗
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4ranked-venue papers in the field
1as first author
3since 2021 · last 2025
0000-0002-5089-9160ORCID · verified

Domains — venue-derived; a paper can count in several

Big Data, Cloud & Distributed Data Systems · 4 (1 first)
YearPublicationVenuePosition
2025 StandUp: A Semi-RAG Retrieval Tool to Enhance Access to Housing Law in England and Wales
abstract
International audience
Jordan Edgecombe, Neil Phillips, Mahmoud Elbattah
IEEE Big Data3
2025 Few-Shot Learning with Pretrained Visual Embeddings of Eye-Tracking Patterns for Autism Detection
abstract
International audience
Mahmoud Elbattah, Federica Cilia, Gilles Dequen
IEEE Big Data1
2023 Explainable NLP Model for Predicting Patient Admissions at Emergency Department Using Triage Notes
abstract
Explainable Artificial Intelligence (XAI) has the potential to revolutionize healthcare by providing more transparent, trustworthy, and understandable predictions made by AI models. To this end, the present study aims to develop an explainable NLP model for predicting patient admissions to the emergency department based on triage notes. We utilize transformer models to leverage the extensive textual data captured in triage notes, while also delivering interpretable results by using the LIME approach. The results show that the proposed model provides satisfactory accuracy along with an interpretable understanding of the factors contributing to patient admission. In general, this work highlights the potential of NLP in improving patient care and decision-making in emergency medicine.
Émilien Arnaud, Mahmoud Elbattah, Pedro A. Moreno-Sánchez, Gilles Dequen, Daniel Aiham Ghazali
IEEE Big Data2
2020 Deep Learning to Predict Hospitalization at Triage: Integration of Structured Data and Unstructured Text
abstract
Overcrowding in Emergency Departments (ED) is considered as an international issue, which could have adverse impacts on multiple care outcomes such as the length of stay for example. Part of the solution could lie in the early prediction of the patient outcome as discharge or hospitalization. This study applies Deep Learning to this end. A large-scale dataset of about 260K ED records was provided by the Amiens-Picardy University Hospital in France. In general, our approach is based on integrating structured data with unstructured textual notes recorded at the triage stage. The key idea is to apply a multi-input of mixed data for training a classification model to predict hospitalization. In a simultaneous manner, the model training utilizes the numeric features along with textual data. On one hand, a standard Multi-Layer Perceptron (MLP) model is used with the standard set of features (i.e. numeric and categorical). On the other hand, a Convolutional Neural Network (CNN) is used to operate over the textual data. The two components of learning are conducted independently in parallel. The empirical results demonstrated that the classifier could achieve a very good accuracy with ROC-AUC≈0.83. The study is conceived to contribute to the mounting efforts of applying Natural Language Processing in the healthcare domain.
Émilien Arnaud, Mahmoud Elbattah, Maxime Gignon, Gilles Dequen
IEEE BigData2