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Updated: Feb 12, 2026

A Knowledge Graph Approach to Elucidate the Role of Organellar Pathways in Disease via Biomedical Reports
Published on: October 13, 2023
Co-occurrence graphs for word sense disambiguation in the biomedical domain
Andres Duque1, Mark Stevenson2, Juan Martinez-Romo3
1NLP & IR Group, Dpto. Lenguajes y Sistemas Informáticos. Universidad Nacional de Educación a Distancia (UNED), Madrid 28040, Spain; Martinez-Romo and Lourdes Araujo: Instituto Mixto de Investigación-Escuela Nacional de Sanidad (IMIENS), Madrid 28029, Spain.
Abstract:
Word sense disambiguation is a key step for many natural language processing tasks (e.g. summarization, text classification, relation extraction) and presents a challenge to any system that aims to process documents from the biomedical domain. In this paper, we present a new graph-based unsupervised technique to address this problem. The knowledge base used in this work is a graph built with co-occurrence information from medical concepts found in scientific abstracts, and hence adapted to the specific domain. Unlike other unsupervised approaches based on static graphs such as UMLS, in this work the knowledge base takes the context of the ambiguous terms into account. Abstracts downloaded from PubMed are used for building the graph and disambiguation is performed using the personalized PageRank algorithm. Evaluation is carried out over two test datasets widely explored in the literature. Different parameters of the system are also evaluated to test robustness and scalability. Results show that the system is able to outperform state-of-the-art knowledge-based systems, obtaining more than 10% of accuracy improvement in some cases, while only requiring minimal external resources.
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