European Spine Journal· 2026Q1
Development and validation of MRI-based radiomics models for predicting recurrence in patients with spine and pelvis chordomas
- 0citations
- Q1SCImago
- 2026year
Short summary
A combined MRI radiomics and clinical data model accurately predicts recurrence in spine and pelvis chordomas (SPC), achieving an AUC of 0.945 in training and 0.897 in testing, outperforming radiomics-only or clinical-only models.
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Abstract
Spine and pelvis chordoma (SPC) is a rare and aggressive mesenchymal tumor with poor long-term recurrence-free survival rates. Accurate preoperative prediction of recurrence remains a significant clinical challenge, and reliable prognostic methods are lacking. To develop and validate MRI-based radiomics models for predicting recurrence in SPC. A single-center retrospective study. A total of 135 SPC patients who underwent preoperative MRI, including T2-weighted imaging (T2WI) and contrast-enhanced T1-weighted (CET1) sequences. Recurrence status of SPC, evaluated using accuracy (ACC), sensitivity (SEN), specificity (SPE), area under the receiver operating characteristic curve (AUC), positive predictive value (PPV), and negative predictive value (NPV). A total of 2394 radiomic features were extracted from manually segmented MRI regions of interest. Features were selected using Spearman correlation analysis and LASSO regression with ten-fold cross-validation. Eleven machine learning algorithms were applied to construct radiomics models, and clinical predictors were identified via univariate and multivariate logistic regression. A combined model incorporating radiomics and clinical data was developed and visualized with a nomogram. Model performance was evaluated using ROC curves, decision curve analysis (DCA), calibration plots, and the DeLong test. Age, tumor size, and resection mode were identified as independent prognostic factors. Among radiomics-based models, the Random Forest (RF) model showed the best performance, with AUCs of 0.929 and 0.847 in the training and test cohorts, respectively, outperforming the clinical model with AUCs of 0.680 and 0.700. The combined model integrating radiomics and clinical features further improved performance, with AUCs of 0.945 and 0.897, and demonstrated the highest net clinical benefit according to DCA. The integrated model constructed by radiomics and clinical characteristics achieved robust preoperative recurrence prediction for SPC, offering personalized treatment and enhanced clinical decision-making.
The authors' abstract, as published at the source. European Spine Journal, 2026 · DOI ↗
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