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Artificial intelligence in lumbar radiography: bridging deep learning and clinical practice in low-resource environments.

August 11, 2026pubmed logopapers

Authors

Wang YL,Huang S,Lee KC,Cheng CM

Affiliations (5)

  • Department of Surgery, Hualien Armed Forces General Hospital, Xincheng, Taiwan.
  • International Intercollegiate PhD Program, National Tsing Hua University, Hsinchu, Taiwan.
  • Department of Applied Science, National Taitung University, Taitung, Taiwan.
  • Department of Physical Medicine and Rehabilitation, Tri-Service General Hospital, National Defense MedicalUniversity, Taipei City, Taiwan.
  • Institute of Biomedical Engineering, National Tsing Hua University, Hsinchu, Taiwan [email protected].

Abstract

Artificial intelligence (AI) has increasingly been applied to medical imaging, yet its role in lumbar spine radiography, particularly in low-resource settings, remains underexplored. To evaluate recent developments in AI-based approaches for lumbar spine radiography and their clinical applicability in resource-constrained environments. A narrative review was conducted focusing on deep learning models applied to lumbar radiographic analysis. Studies published between 2022 and 2024 were identified through structured screening of PubMed and Google Scholar. Deep learning models, including convolutional neural networks, U-Net, ResNet and generative adversarial networks, have demonstrated improved performance in segmentation, classification and curvature analysis. Lightweight architectures show potential for deployment in resource-limited settings. AI-based lumbar imaging has the potential to enhance diagnostic accuracy and workflow efficiency in low-resource environments. However, challenges related to validation, interpretability and clinical integration remain, highlighting the need for further large-scale and real-world studies.

Topics

Deep LearningArtificial IntelligenceLumbar VertebraeRadiographyJournal ArticleReview

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