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Beyond Negation Detection: Comprehensive Assertion Detection Models for Clinical NLP

21 March 2025
Veysel Kocaman
Yigit Gul
M. Aytug Kaya
H. Haq
Mehmet Butgul
Cabir Celik
D. Talby
    MedIm
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Abstract

Assertion status detection is a critical yet often overlooked component of clinical NLP, essential for accurately attributing extracted medical facts. Past studies have narrowly focused on negation detection, leading to underperforming commercial solutions such as AWS Medical Comprehend, Azure AI Text Analytics, and GPT-4o due to their limited domain adaptation. To address this gap, we developed state-of-the-art assertion detection models, including fine-tuned LLMs, transformer-based classifiers, few-shot classifiers, and deep learning (DL) approaches. We evaluated these models against cloud-based commercial API solutions, the legacy rule-based NegEx approach, and GPT-4o. Our fine-tuned LLM achieves the highest overall accuracy (0.962), outperforming GPT-4o (0.901) and commercial APIs by a notable margin, particularly excelling in Present (+4.2%), Absent (+8.4%), and Hypothetical (+23.4%) assertions. Our DL-based models surpass commercial solutions in Conditional (+5.3%) and Associated-with-Someone-Else (+10.1%) categories, while the few-shot classifier offers a lightweight yet highly competitive alternative (0.929), making it ideal for resource-constrained environments. Integrated within Spark NLP, our models consistently outperform black-box commercial solutions while enabling scalable inference and seamless integration with medical NER, Relation Extraction, and Terminology Resolution. These results reinforce the importance of domain-adapted, transparent, and customizable clinical NLP solutions over general-purpose LLMs and proprietary APIs.

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@article{kocaman2025_2503.17425,
  title={ Beyond Negation Detection: Comprehensive Assertion Detection Models for Clinical NLP },
  author={ Veysel Kocaman and Yigit Gul and M. Aytug Kaya and Hasham Ul Haq and Mehmet Butgul and Cabir Celik and David Talby },
  journal={arXiv preprint arXiv:2503.17425},
  year={ 2025 }
}
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