基于超声影像的下腔静脉自动识别与定位
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国家自然科学基金(82151318,32201134,32171366,31671002),上海市“科技创新行动计划”医学创新研究专项(21Y11902500),2023年地方科学发展基金(XZ202301YD0032C),吉林省科技发展计划项目(20230204094YY).


Automated identification and localization of inferior vena cava based on ultrasound images
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Supported by National Natural Science Foundation of China (82151318,32201134,32171366,31671002),Scientific and Technological Innovation Plan of Science and Technology Commission of Shanghai Municipality (21Y11902500),Scientific Development Fund for Local Region from Chinese Government in 2023(XZ202301YD0032C),and Science and Technology Development Plan of Jilin Province (20230204094YY).

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    摘要:

    目的 探究基于下腔静脉(IVC)超声影像的IVC自动识别与直径测量方法。方法 提出一种基于拓扑结构与自动跟踪算法的IVC自动识别与定位方法,采用跟踪方式对数据集进行IVC识别和连续定位,以提高测量的效率和准确性。以超声医师的人工测量结果作为金标准,在采集自ICU的18例患者的18组超声数据集上进行测试。结果 自动化算法识别准确率为94.44%(17/18),IVC直径自动测量误差在±1.96ss为标准差)范围内,表明自动测量方法可替代人工测量方法。结论 本研究提出的基于拓扑结构与自动跟踪算法的IVC自动识别与定位算法具有较高的识别成功率及IVC直径测量准确性,可以辅助临床医师进行IVC的识别定位与直径测量。

    Abstract:

    Objective To explore the automated identification and diameter measurement methods for inferior vena cava (IVC) based on clinical ultrasound images of IVC. Methods An automated identification and localization method based on topology and automatic tracking algorithm was proposed. Tracking algorithm was used for identifying and continuously locating to improve the efficiency and accuracy of measurement. Tests were conducted on 18 sets of ultrasound data collected from 18 patients in intensive care unit (ICU), with clinicians’ measurements as the gold standard. Results The recognition accuracy of the automated method was 94.44% (17/18), and the measurement error of IVC diameter was within the range of ±1.96ss was the standard deviation). The automated method could replace the manual method. Conclusion The proposed IVC automated identification and localization algorithm based on topology and automatic tracking algorithm has high recognition success rate and IVC diameter measurement accuracy. It can assist clinicians in identifying and locating IVC, so as to improve the accuracy of IVC measurement.

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  • 收稿日期:2023-12-23
  • 最后修改日期:2024-05-07
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  • 在线发布日期: 2024-09-23
  • 出版日期: 2024-09-20
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