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A machine learning approach to predict treatment response in myofascial pain patients receiving masseter trigger point injections

Title (English)

A machine learning approach to predict treatment response in myofascial pain patients receiving masseter trigger point injections

Thong tin bai bao / Article info

  • Tac gia / Authors: Alshaimaa Ahmed Shabaan, Islam Kassem, Aliaa Mahrous, Inass Aboulmagd, Islam A. Amer, Ahmed Shaaban, Kareem Kamal Fathy, Reham Ragab, Mohamed Abd-El-Ghafour, Sally Ibrahim, Shaimaa Mohsen Refahee
  • Tap chi / Journal: BMC Oral Health
  • Ngay xuat ban / Published: 2026-08-10
  • DOI: 10.1186/s12903-026-09491-0
  • Nguon / Source: OpenAlex

Abstract (English)

Abstract Background Trigger point injection (TPI) therapy is widely used for masseter myofascial pain syndrome (MPS), yet outcomes vary substantially. Individualized prediction tools are lacking, often leading to trial-and-error treatment selection. Objective To develop, externally validate, and generalize ensemble machine learning models for predicting composite treatment success following masseter TPI, and to deploy a web-based clinical decision support system (CDSS). Methods This multicenter study included 1,181 patients with DC/TMD‑diagnosed masseter MPS treated with one of six injectable modalities. Baseline variables included pain (VAS), maximum mouth opening (MMO), and oral health‑related quality of life (OHIP-14). Composite treatment success was defined as simultaneous clinically meaningful improvement at 3 months: VAS reduction ≥ 2 points, MMO increase ≥ 5 mm, and OHIP-14 reduction ≥ 5 points. Random Forest (RF) and XGBoost models were trained on an internal cohort and externally validated on a geographically independent cohort. Performance was assessed using ROC‑AUC, precision‑recall AUC (PR‑AUC), calibration, decision curve analysis (DCA), and SHAP interpretability. Results Overall composite success rate was 43.1%. Internal validation ROC‑AUC was 0.914 (RF) and 0.888 (XGBoost); external validation ROC‑AUC was 0.771 and 0.787, respectively. External PR‑AUC values were 0.759 (RF) and 0.761 (XGBoost). Both models showed good calibration and positive net benefit on DCA across clinically relevant thresholds. SHAP analysis identified baseline MMO, OHIP-14, age, pain intensity, and injectable modality as the most influential predictors, with consistent rankings across models and cohorts. The validated XGBoost model was deployed as a web‑based CDSS. Conclusions Machine learning models demonstrated good ability to predict multidimensional treatment success following masseter TPI. Baseline MMO, OHIP-14, age, pain intensity, and injectable modality were the strongest outcome determinants. External validation, SHAP interpretability, and DCA support model robustness and potential clinical utility for personalized treatment planning in MPS. Clinical relevance This tool may support treatment selection, reduce ineffective interventions, and improve patient outcomes in myofascial pain management.

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Bai dang tu dong boi plugin Ortho OA Fetcher. Anh (neu co) tu PubMed Central. Noi dung lay tu nguon open access va dich tu dong – chi mang tinh tham khao.

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