Predicting the rupture status of small middle cerebral artery aneurysms using random forest modeling

动脉瘤 逻辑回归 医学 列线图 大脑中动脉 接收机工作特性 随机森林 放射科 计算机断层血管造影 血管造影 优势比 心脏病学 内科学 计算机科学 缺血 机器学习
作者
Jiafeng Zhou,Nengzhi Xia,Qiong Li,Kuikui Zheng,Xiufen Jia,Hao Wang,Bing Zhao,Jinjin Liu,Yunjun Yang,Yongchun Chen
出处
期刊:Frontiers in Neurology [Frontiers Media]
卷期号:13 被引量:2
标识
DOI:10.3389/fneur.2022.921404
摘要

Objective Small intracranial aneurysms are increasingly being detected; however, a prediction model for their rupture is rare. Random forest modeling was used to predict the rupture status of small middle cerebral artery (MCA) aneurysms with morphological features. Methods From January 2009 to June 2020, we retrospectively reviewed patients with small MCA aneurysms (<7 mm). The aneurysms were randomly split into training (70%) and internal validation (30%) cohorts. Additional independent datasets were used for the external validation of 78 small MCA aneurysms from another four hospitals. Aneurysm morphology was determined using computed tomography angiography (CTA). Prediction models were developed using the random forest and multivariate logistic regression. Results A total of 426 consecutive patients with 454 small MCA aneurysms (<7 mm) were included. A multivariate logistic regression analysis showed that size ratio (SR), aspect ratio (AR), and daughter dome were associated with aneurysm rupture, whereas aneurysm angle and multiplicity were inversely associated with aneurysm rupture. The areas under the receiver operating characteristic (ROC) curves (AUCs) of random forest models using the five independent risk factors in the training, internal validation, and external validation cohorts were 0.922, 0.889, and 0.92, respectively. The random forest model outperformed the logistic regression model ( p = 0.048). A nomogram was developed to assess the rupture of small MCA aneurysms. Conclusion Random forest modeling is a good tool for evaluating the rupture status of small MCA aneurysms and may be considered for the management of small aneurysms.

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