临床外科杂志 ›› 2026, Vol. 34 ›› Issue (7): 834-840.doi: 10.3969/j.issn.1005-6483.20251007

• 论著 • 上一篇    

多发性肋骨骨折并发血胸的列线图预测模型构建与验证

蒋百露,赵云,于华明,毛冬梅,熊国江   

  1. 330000 江西南昌,江西中医药大学(蒋百露、毛冬梅);江西中医药大学附属医院心胸外科(赵云、于华明、熊国江)
  • 收稿日期:2025-10-22 出版日期:2026-07-20 发布日期:2026-07-20
  • 通讯作者: 熊国江,Email:1160888698@qq.com
  • 作者简介:熊国江,Email:1160888698@qq.com
  • 基金资助:
    江西省中医药管理局计划项目(2023B0279)

Construction and verification of nomogram prediction model for multiple rib fracture complicated with hemothorax

JIANG Bailu, ZHAO Yun, YU Huaming, MAO Dongmei, XIONG Guojiang   

  1. *Jiangxi University of Chinese Medicine, Nanchang 330000, China
  • Received:2025-10-22 Online:2026-07-20 Published:2026-07-20

摘要: 目的 分析多发性肋骨骨折并发血胸的危险因素,并构建列线图预测模型。方法 2022年6月~2024年6月我院多发性肋骨骨折病人400例,按照7∶3的比例随机划分为建模组(280例)和验证组(120例)。根据有无并发血胸情况,将建模组中并发血胸病人纳入并发血胸组(70例),未并发血胸病人纳入未并发血胸组(210例);将验证组中并发血胸病人纳入并发血胸组(33例),未并发血胸病人纳入未并发血胸组(87例)。收集病人的一般临床资料,多因素Logistic回归模型分析筛选独立危险因素,R软件“rms”包构建列线图预测模型。结果 在建模组和验证组中,并发血胸组与未并发血胸组高血压史、骨折数量、双侧骨折、胸部创伤严重度评分、胸腔置管、合并肺挫伤、连枷胸、白细胞计数、血红蛋白、D-二聚体比较差异有统计学意义(P<0.05)。胸腔置管、连枷胸、白细胞计数>8.04×109/L、血红蛋白>138.13g/L、D-二聚体>1.32mg/L是多发性肋骨骨折并发血胸的独立危险因素(P<0.05)。Hosmer-Lemeshow拟合优度检验结果表明,建模组为χ2=6.855,P=0.552,验证组为χ2=6.147,P=0.631,该模型具有较好的一致性与拟合度。决策曲线结果显示,建模组风险阈值取值在0.08~0.98之间、验证组风险阈值取值>0.08时,此预测模型可以提供额外的临床净收益。受试者工作特征曲线分析结果显示,建模组的曲线下面积(AUC)为0.861,95%CI为0.807~0.915,验证组的AUC为0.842,95%CI为0.757~0.926,表明该模型预测效能较好。结论 基于胸腔置管、连枷胸、白细胞计数、血红蛋白、D-二聚体构建的列线图模型可为多发性肋骨骨折病人并发血胸的预测评估指导。

关键词: 多发性肋骨骨折, 血胸, 危险因素, 列线图

Abstract: Objective To analyze the risk factors for hemothorax in multiple rib fractures and construct a nomogram prediction model.Methods From June 2022 to June 2024, 400 patients with multiple rib fractures in our hospital were randomly divided into the modeling group (280 cases) and the validation group (120 cases) at a ratio of 7∶3.Based on the presence or absence of concurrent hemothorax, patients with concurrent hemothorax in the modeling group were included in the concurrent hemothorax group (70 cases), and patients without concurrent hemothorax were included in the non-concurrent hemothorax group (210 cases).Patients with hemothorax in the validation group were included in the hemothorax group (33 cases), and those without hemothorax were included in the non-hemothorax group (87 cases).Clinical data were collected, and independent risk factors were screened through a multivariate logistic regression model.The nomogram prediction model was constructed using the rms package in R software.Results In both the modeling group and the validation group, there were statistically significant differences between the group with concurrent hemothorax and the group without concurrent hemothorax in terms of history of hypertension, number of fractures, bilateral fractures, severity score of chest trauma, chest tube placement, coexisting pulmonary contusion, flail chest, white blood cells, hemoglobin, and D-dimer (P<0.05).Thoracic catheterization, flail chest, leukocyte>8.04×109/L, hemoglobin>138.13 g/L, D-dimer>1.32 mg/L were independent risk factors of multiple rib fractures complicated with hemothorax (P<0.05), and the constructed logistic regression prediction model was validated accordingly.The Hosmer-Lemeshow goodness-of-fit test results indicate that the modeling group has a χ2=6.855 (P=0.552) and the validation group has a χ2=6.147 (P=0.631), demonstrating good consistency and fit of the model.Decision curve analysis shows that when the risk threshold in the modeling group ranges between 0.08-0.98 and in the validation group exceeds 0.08, the predictive model provides additional clinical net benefits.In the receiver operating characteristic curve, the area under the curve (AUC) of the modeling group was 0.861, with a 95%CI of 0.807-0.915, and the AUC of the validation group was 0.842, with a 95%CI of 0.757-0.926.This indicates that the predictive efficacy of the model is good.Conclusion The nomogram constructed using thoracic tube placement, flail chest, white blood cell count, hemoglobin level, and D-dimer provides crucial strategic guidance for predicting and evaluating complications such as hemothorax in patients with multiple rib fractures, as well as for clinical nursing interventions.

Key words: multiple rib fractures, hemothorax, risk factors, nomogram

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