基于临床及剂量学特征构建模型预测鼻咽癌放疗后颞叶损伤的研究
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南京医科大学第一附属医院放射科

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国家重点研发计划(2022YFC2401604)


Research on constructing a model based on clinical and dosimetric characteristics to predict temporal lobe injury after radiotherapy for nasopharyngeal carcinoma
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    摘要:

    目的:基于鼻咽癌患者的临床及剂量学特征构建模型,并评估其对放疗后出现放射性颞叶损伤(TLI)的预测价值。材料与方法:回顾性分析2018年6月至2023年11月期间365例(包括放射性颞叶损伤组42例和无放射学颞叶损伤组323例)在我院放疗科接受以放疗为主的综合治疗的鼻咽癌患者的临床资料。收集患者的临床特征及剂量学特征,使用单因素及多因素logistic回归分析筛选出与放射性颞叶损伤相关的独立危险因素。利用随机森林(Random Forest,RF)机器学习算法构建临床特征模型及临床+剂量学特征联合模型。绘制受试者操作特征(ROC)曲线,计算曲线下面积(AUC)、灵敏度、特异度等参数,绘制校准曲线及决策曲线分析(DCA)评估模型的预测效能。结果:通过单因素、多因素logistic回归分析得出临床特征中的T分期及剂量学特征中的D<sub>1cm</sub><sub>3</sub>、V<sub>70</sub>这3个特征的差异有统计学意义(P< 0.05)。联合模型和临床模型的AUC值、灵敏度、特异度和准确率分别为0.853和0.635、66.67%和85.71%、86.38%和39.94%、84%和45%。DeLong检验显示,联合模型与临床模型的预测效能差异具有统计学意义(P<0.05)。校准曲线和决策曲线分析结果均表明联合模型具有更高的校准度和临床净获益。结论:T分期、D<sub>1cm</sub><sub>3</sub>、V<sub>70</sub>是放射性颞叶损伤的独立影响因素,基于三者的联合模型对鼻咽癌放疗后颞叶损伤具有较高的预测能力。

    Abstract:

    Objective: To establish a predictive model based on the clinical and dosimetric characteristics of patients with nasopharyngeal carcinoma(NPC), and assess its predictive efficacy for radiation-induced temporal lobe injury following radiotherapy. Materials and Methods: We performed a retrospective analysis of the clinical data from 365 NPC patients (comprising 42 with radiation-induced temporal lobe injury and 323 without)who underwent radiotherapy-based comprehensive treatment in the radiotherapy department of our institution from June 2018 to November 2023. Clinical and dosimetric characteristics were collected, and univariate and multivariate logistic regression analyses were employed to identify independent risk factors associated with radiation-induced temporal lobe injury. The random forest (RF) machine learning algorithm was used to construct a clinical feature model and a combined clinical and dosimetric feature model. Receiver Operating Characteristic (ROC) curves were plotted, and parameters such as the area under the ROC curve (AUC), sensitivity, and specificity were calculated. Calibration curves and Decision Curve Analysis (DCA) were also conducted to evaluate the predictive performance of the models. Results: Univariate and multivariate logistic regression analyses revealed statistically significant differences in three features: T-stage(clinical characteristic) and D<sub>1cm</sub><sub>3</sub>and V70(dosimetric characteristics)(P<0.05). The AUC values, sensitivity, specificity, and accuracy of the combined model and clinical model were 0.853 and 0.635, 66.67% and 85.71%, 86.38% and 39.94%, and 84% and 45%, respectively. The DeLong test indicated a statistically significant difference on predictive performance between combined and clinical models(P<0.05). Both calibration curves and DCA results demonstrated that the combined model exhibited superior calibration and clinical net benefit. Conclusion: T-stage, D<sub>1cm</sub><sub>3</sub>, and V<sub>70</sub> are independent predictors of radiation-induced temporal lobe injury. The combined model based on these three factors demonstrates high predictive capability for temporal lobe injury following NPC radiotherapy.

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  • 收稿日期:2026-03-24
  • 最后修改日期:2026-07-14
  • 录用日期:2026-09-03
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