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首页> 外文期刊>解剖学雑誌 >Three-dimensional reconstruction of paracentesis approach in transjugular intrahepatic portosystemic shunt
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Three-dimensional reconstruction of paracentesis approach in transjugular intrahepatic portosystemic shunt

机译:古代静脉内部波特罗斯系统分流器中腹腔探伤方法的三维重建

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摘要

To establish a digital transjugular intrahepatic portosystemic shunt (TIPS) model and provide morphological data for radiological diagnosis and interventional radiology to reduce portal vein pressure, 400 serial sectional images from the internal jugular vein superior margin to the lower edge of the liver were chosen from the Chinese Visible Human dataset. Surface and volume reconstructions were performed using 3D-DOCTOR 3.5 software on an ordinary personal computer. Volume and surface renderings were employed to perform data segmentation and image edge detection for reconstruction of the internal jugular vein, brachiocephalic vein, superior vena cava, heart, inferior vena cava, hepatic vein, and portal vein for computerized 3D reconstruction of the TIPS pathway and construction of a 3D visible model of different structures along it. The model can also display pathway and distribution characteristics and interactively show the spatial structural relationships between intrahepatic venous lines from any position and angle, plus complete data acquisition for any range and angle for 3D reconstruction with stereopsis and measurements using any visualization platform. The digital reconstruction of the TIPS pathway correctly reflected the complicated anatomic structural characteristics and spatial adjacency relationships between intrahepatic venous lines, providing a reference 3D morphology for image diagnostics and interventional TIPS therapy.
机译:要建立数字讲台肝内波特罗组分流器(提示)模型,并提供放射学诊断的形态学数据和介入放射学,以降低门静脉压力,从内部颈静脉的串行剖视图到肝脏下部边缘的内部边缘中国可见人类数据集。在普通的个人计算机上使用3D-Doctor 3.5软件进行表面和体积重建。使用体积和表面渲染来执行用于重建内部颈静脉,肱骨静脉,高级腔静脉,心脏,较差腔静脉,肝静脉和用于计算机的三维途径的电脑三维重建的门静脉的数据分段和图像边缘检测沿IT建设不同结构的3D可见模型。该模型还可以显示途径和分布特性,并且交互式地示出了从任何位置和角度的肝内静脉线之间的空间结构关系,以及使用任何可视化平台的立体声和测量的3D重建的任何范围和角度的完整数据采集。提示途径的数字重建正确地反映了肝内静脉线之间的复杂解剖结构特征和空间邻接关系,为图像诊断和介入提示治疗提供了参考3D形态。

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