English

SuMe: A Dataset Towards Summarizing Biomedical Mechanisms

Computation and Language 2023-01-13 v1 Artificial Intelligence Information Retrieval Machine Learning

Abstract

Can language models read biomedical texts and explain the biomedical mechanisms discussed? In this work we introduce a biomedical mechanism summarization task. Biomedical studies often investigate the mechanisms behind how one entity (e.g., a protein or a chemical) affects another in a biological context. The abstracts of these publications often include a focused set of sentences that present relevant supporting statements regarding such relationships, associated experimental evidence, and a concluding sentence that summarizes the mechanism underlying the relationship. We leverage this structure and create a summarization task, where the input is a collection of sentences and the main entities in an abstract, and the output includes the relationship and a sentence that summarizes the mechanism. Using a small amount of manually labeled mechanism sentences, we train a mechanism sentence classifier to filter a large biomedical abstract collection and create a summarization dataset with 22k instances. We also introduce conclusion sentence generation as a pretraining task with 611k instances. We benchmark the performance of large bio-domain language models. We find that while the pretraining task help improves performance, the best model produces acceptable mechanism outputs in only 32% of the instances, which shows the task presents significant challenges in biomedical language understanding and summarization.

Keywords

Cite

@article{arxiv.2205.04652,
  title  = {SuMe: A Dataset Towards Summarizing Biomedical Mechanisms},
  author = {Mohaddeseh Bastan and Nishant Shankar and Mihai Surdeanu and Niranjan Balasubramanian},
  journal= {arXiv preprint arXiv:2205.04652},
  year   = {2023}
}

Comments

Accepter at LREC2022

R2 v1 2026-06-24T11:12:23.532Z