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基于 CT 图像的肝脏肿瘤介入热消融路径规划系统设计。

Design of Path-Planning System for Interventional Thermal Ablation of Liver Tumors Based on CT Images.

机构信息

Department of Biomedical Engineering, College of Chemistry and Life Sciences, Beijing University of Technology, Beijing 100124, China.

College of Biomedical Engineering, Capital Medical University, Beijing 100069, China.

出版信息

Sensors (Basel). 2024 May 30;24(11):3537. doi: 10.3390/s24113537.

Abstract

OBJECTIVE

Aiming at the shortcomings of artificial surgical path planning for the thermal ablation of liver tumors, such as the time-consuming and labor-consuming process, and relying heavily on doctors' puncture experience, an automatic path-planning system for thermal ablation of liver tumors based on CT images is designed and implemented.

METHODS

The system mainly includes three modules: image segmentation and three-dimensional reconstruction, automatic surgical path planning, and image information management. Through organ segmentation and three- dimensional reconstruction based on CT images, the personalized abdominal spatial anatomical structure of patients is obtained, which is convenient for surgical path planning. The weighted summation method based on clinical constraints and the concept of Pareto optimality are used to solve the multi-objective optimization problem, screen the optimal needle entry path, and realize the automatic planning of the thermal ablation path. The image information database was established to store the information related to the surgical path.

RESULTS

In the discussion with clinicians, more than 78% of the paths generated by the planning system were considered to be effective, and the efficiency of system path planning is higher than doctors' planning efficiency.

CONCLUSION

After improvement, the system can be used for the planning of the thermal ablation path of a liver tumor and has certain clinical application value.

摘要

目的

针对肝脏肿瘤热消融手术人工路径规划耗时耗力、严重依赖医生穿刺经验等缺点,设计并实现了一种基于 CT 图像的肝脏肿瘤热消融自动路径规划系统。

方法

系统主要包括三个模块:图像分割与三维重建、自动手术路径规划和图像信息管理。通过基于 CT 图像的器官分割和三维重建,获取患者个性化的腹部空间解剖结构,便于手术路径规划。采用基于临床约束的加权求和方法和 Pareto 最优性概念来解决多目标优化问题,筛选出最优的进针路径,实现热消融路径的自动规划。建立图像信息数据库,存储与手术路径相关的信息。

结果

在与临床医生的讨论中,超过 78%的规划系统生成的路径被认为是有效的,并且系统路径规划的效率高于医生的规划效率。

结论

经改进后,该系统可用于肝脏肿瘤热消融路径的规划,具有一定的临床应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e20/11175280/630787a86007/sensors-24-03537-g001.jpg

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