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Updated: Feb 13, 2026

A Swin Transformer-Based Model for Thyroid Nodule Detection in Ultrasound Images
Published on: April 21, 2023
[Research on a Deep Learning-Based Model for Predicting Malignancy Risk of Pan-Endocrine System across Thyroid and
Hong Wang1, Zhongli Geng1, Zhen Ma2
1Department of Thyroid and Breast Surgery, The Fourth Affiliated Hospital of Xinjiang Medical University, Urumqi, 830002.
Objective:
To construct a cross-organ AI model based on multi-task deep learning (DL) to achieve unified prediction of malignancy risks of thyroid and breast nodules.
Methods:
Clinical data of patients with thyroid nodules ( n=2386) and breast nodules ( n=2753) from three hospitals were collected. A multi-task deep learning model was constructed based on the Transformer architecture, and a design that combines feature sharing layers with organ-specific layers was adopted. Performance was evaluated through five-fold cross-validation, and tested on an independent external validation set ( n=835), and SHAP analysis was used to explain model decisions.
Results:
The constructed AI model for pan-endocrine nodules achieved an AUC of 0.932 (95%CI: 0.914-0.951) in the prediction of thyroid nodules, with a sensitivity of 86.5% and a specificity of 89.2%. The predictive AUC of breast nodules was 0.917 (95%CI: 0.896-0.938), with a sensitivity of 84.3% and a specificity of 88.7%. Compared with the single-organ model, the pan-model performed better on small sample datasets ( P<0.01), and remained stable in external validation (AUC>0.90). SHAP analysis revealed that edge irregularity, calcification type, and internal echo were common important features, while blood flow signals and TI-RADS/BI-RADS classification were organ-specific features.
Conclusion:
A high-performance cross-organ malignancy risk prediction model for thyroid-breast nodules was successfully constructed, confirming that pan-endocrine nodules can be precisely stratified for risk through a unified deep learning architecture, providing a new paradigm for AI-assisted diagnosis of endocrine tumors.
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