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支持计算机断层扫描引导下经皮穿刺的三维穿刺路径搜索方法

Searching Method for Three-Dimensional Puncture Route to Support Computed Tomography-Guided Percutaneous Puncture.

作者信息

Gotoh Yusuke, Takeda Aoi, Masui Koji, Sakai Koji, Fujimoto Manato

机构信息

Faculty of Environmental, Life, Natural Science and Technology, Okayama University, 3-1-1, Tsushima-naka, Kita-ku, Okayama 7008530, Japan.

Graduate School of Natural Science and Technology, Okayama University, 3-1-1, Tsushima-naka, Kita-ku, Okayama 7008530, Japan.

出版信息

J Imaging. 2024 Oct 14;10(10):251. doi: 10.3390/jimaging10100251.

Abstract

In CT-guided percutaneous punctures-an image-guided puncture method using CT images-physicians treat targets such as lung tumors, liver tumors, renal tumors, and intervertebral abscesses by inserting a puncture needle into the body from the exterior while viewing images. By recognizing two-dimensional CT images prior to a procedure, a physician determines the least invasive puncture route for the patient. Therefore, the candidate puncture route is limited to a two-dimensional region along the cross section of the human body. In this paper, we aim to construct a three-dimensional puncture space based on multiple two-dimensional CT images to search for a safer and shorter puncture route for a given patient. If all puncture routes starting from a target in the three-dimensional space were examined from all directions (the brute-force method), the processing time to derive the puncture route would be very long. We propose a more efficient method for three-dimensional puncture route selection in CT-guided percutaneous punctures. The proposed method extends the ray-tracing method, which quickly derives a line segment from a given start point to an end point on a two-dimensional plane, and applies it to three-dimensional space. During actual puncture route selection, a physician can use CT images to derive a three-dimensional puncture route that is safe for the patient and minimizes the puncture time. The main novelty is that we propose a method for deriving a three-dimensional puncture route within the allowed time in an actual puncture. The main goal is for physicians to select the puncture route they will use in the actual surgery from among the multiple three-dimensional puncture route candidates derived using the proposed method. The proposed method derives a three-dimensional puncture route within the allowed time in an actual puncture. Physicians can use the proposed method to derive a new puncture route, reducing the burden on patients and improving physician skills. In the evaluation results of a computer simulation, for a 3D CT image created by combining 170 two-dimensional CT images, the processing time for deriving the puncture route using the proposed method was approximately 59.4 s. The shortest length of the puncture route from the starting point to the target was between 20 mm and 22 mm. The search time for a three-dimensional human body consisting of 15 CT images was 4.77 s for the proposed method and 2599.0 s for a brute-force method. In a questionnaire, physicians who actually perform puncture treatments evaluated the candidate puncture routes derived by the proposed method. We confirmed that physicians could actually use these candidates as a puncture route.

摘要

在CT引导下的经皮穿刺中(一种利用CT图像的图像引导穿刺方法),医生通过在查看图像的同时从体外将穿刺针插入体内,来治疗诸如肺肿瘤、肝肿瘤、肾肿瘤和椎间隙脓肿等靶点。在手术前通过识别二维CT图像,医生为患者确定侵入性最小的穿刺路径。因此,候选穿刺路径仅限于沿着人体横截面的二维区域。在本文中,我们旨在基于多个二维CT图像构建三维穿刺空间,为特定患者寻找更安全、更短的穿刺路径。如果从三维空间中的一个靶点出发的所有穿刺路径都从各个方向进行检查(穷举法),那么得出穿刺路径的处理时间将会非常长。我们提出了一种在CT引导下的经皮穿刺中进行三维穿刺路径选择的更高效方法。所提出的方法扩展了光线追踪法,该方法能在二维平面上快速从给定起点到终点得出一条线段,并将其应用于三维空间。在实际穿刺路径选择过程中,医生可以利用CT图像得出对患者安全且穿刺时间最短的三维穿刺路径。主要创新点在于我们提出了一种在实际穿刺的允许时间内得出三维穿刺路径的方法。主要目标是让医生从使用所提出的方法得出的多个三维穿刺路径候选方案中选择他们将在实际手术中使用的穿刺路径。所提出的方法在实际穿刺的允许时间内得出三维穿刺路径。医生可以使用所提出的方法得出新的穿刺路径,减轻患者负担并提高医生技能。在计算机模拟的评估结果中,对于通过组合170张二维CT图像创建的三维CT图像,使用所提出的方法得出穿刺路径的处理时间约为59.4秒。从起点到靶点的穿刺路径最短长度在20毫米至22毫米之间。对于由15张CT图像组成的三维人体,所提出的方法的搜索时间为4.77秒,而穷举法的搜索时间为2599.0秒。在一份问卷中,实际进行穿刺治疗的医生对所提出的方法得出的候选穿刺路径进行了评估。我们证实医生实际上可以将这些候选方案用作穿刺路径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9857/11508266/8701cbff494a/jimaging-10-00251-g001.jpg

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