Machine Learning in Healthcare Open access Peer reviewed

Natural Language Processing Applied to Psychiatric Clinical Notes: Scoping Review

Shuying Rao, X. R. Chen, Guifeng Deng, Junyi Xie and 4 more

JMIR Medical Informatics | Jul 10, 2026

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This scoping review analyzed NLP methods applied to psychiatric clinical notes, focusing on major trends, identifying suitable features for traditional machine learning (ML)-based models, applications of pretrained language models (PLMs), and key challenges.

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Background: Psychiatric clinical notes in electronic health records (EHRs) provide rich longitudinal information that can support clinical decision-making. Using historical medical data can enable earlier identification of mental illness, better characterization of disease trajectories, and more personalized treatment planning. Natural language processing (NLP) transforms these unstructured notes into analyzable representations for research and care. Objective: This study aims to systematically summarize NLP methodologies for psychiatric clinical notes, compare major modeling paradigms and application areas, and highlight emerging large language model (LLM) trends, key challenges, and future research directions. Methods: Following the PRISMA-ScR (Preferred Reporting Items for Systematic Reviews and Meta-Analyses Extension for Scoping Reviews) guidelines, a literature search was conducted for articles on NLP methods based on psychiatric clinical notes published from January 2021 to December 2025 in Ovid MEDLINE, Ovid EMBASE, PubMed, Scopus, Web of Science, the ACM Digital Library, and ScienceDirect. This scoping review analyzed NLP methods applied to psychiatric clinical notes, focusing on major trends, identifying suitable features for traditional machine learning (ML)-based models, applications of pretrained language models (PLMs), and key challenges. Approaches were categorized as rule-based, traditional ML, hybrid, deep learning (DL), and LLM-based methods across information extraction and text classification tasks. Results: In total, 101 studies were eligible for inclusion. Rule-based methods (n=36) and hybrid approaches (n=34) remained the most widely used techniques, largely favored for their interpretability in handling nuanced, subjective clinical notes. These were followed by DL (n=15), traditional ML (n=10), and LLM-based approaches (n=6). Traditional ML studies relied heavily on engineered features, which could be grouped into 5 broad categories: domain knowledge features, lexical and statistical features, vector-based semantic features, emotion-related features, and temporal features. PLMs improved performance mainly through domain adaptation and task-specific fine-tuning, enhancing the handling of psychiatric language, medical terminology, and clinical note structure. LLM-based studies, although still limited in number, indicated a growing shift toward generative and reasoning-based applications. Conclusions: Hybrid NLP approaches remain dominant, combining domain rules with ML for extraction and classification. DL approaches continue to advance, with domain adaptation supporting medical terminology and clinical semantics. LLMs may further automate complex workflows via zero-shot capabilities and reasoning, alongside growing interest in temporal modeling and multimodal integration. Key future needs include improved generalizability across institutions, privacy protection, and careful attention to ethical implications in clinical deployment.

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Authors

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Shuying Rao

first | Zhejiang Hospital

X. R. Chen

middle | Zhejiang Hospital | ORCID 0009-0008-5061-4699

Guifeng Deng

middle | Zhejiang Hospital

Junyi Xie

middle | Zhejiang Hospital

Tiecheng Jiang

middle | Shenyang University of Technology

Tao Li

middle | Zhejiang Hospital | ORCID 0000-0002-7013-5272

Yaoyun Zhang

middle | The University of Texas at Dallas

Haiteng Jiang

last | Zhejiang Hospital | ORCID 0000-0003-0739-8413

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BibTeX

@article{Rao2026Natural,
  title = {Natural Language Processing Applied to Psychiatric Clinical Notes: Scoping Review},
  author = {Shuying Rao and X. R. Chen and Guifeng Deng and Junyi Xie and Tiecheng Jiang and Tao Li and Yaoyun Zhang and Haiteng Jiang},
  journal = {JMIR Medical Informatics},
  year = {2026},
  doi = {10.2196/91249},
  url = {https://doi.org/10.2196/91249}
}

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