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首页> 外文期刊>Academic radiology >Computer-based anatomy a prerequisite for computer-assisted radiology and surgery.
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Computer-based anatomy a prerequisite for computer-assisted radiology and surgery.

机译:基于计算机的解剖是计算机辅助放射学和外科手术的前提。

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摘要

RATIONALE AND OBJECTIVES: The aim of the study is to show the possibilities opened up by three-dimensional (3D) computer-based models of the human body for education in anatomy, training of radiological and endoscopic examinations, and simulation of surgical procedures. MATERIALS AND METHODS: Based on 3D data sets obtained from the Visible Human and/or clinical cases, virtual body models are created that provide an integrated spatial and symbolic description of the anatomy by using interactive color/intensity-based segmentation, ray casting visualization with subvoxel resolution, a semantic network for knowledge modeling, and augmented QuickTime VR (Apple Computer, Inc, Cupertino, CA) movies for presentation. RESULTS: From these models, various radiological, endoscopic, or haptic manifestations of the body can be derived. This is shown with examples from anatomy teaching, correlation of x-ray images with 3D anatomy for education in radiology, gastrointestinal endoscopy, correlation of ultrasound imageswith 3D anatomy in endoscopic ultrasonography, and simulation of drilling in temporal bone surgery. CONCLUSION: The presented models provide a means for realistic training in interpretation of radiological and endoscopic images of the human body. Furthermore, certain surgical procedures may be simulated realistically. Used as a complement to the current curriculum, these models have the potential to greatly decrease education times and costs.
机译:理由和目的:这项研究的目的是显示通过人体的三维(3D)计算机模型进行解剖学教育,放射学和内窥镜检查培训以及手术过程模拟的可能性。材料和方法:基于从可见人类和/或临床病例获得的3D数据集,创建虚拟人体模型,该模型通过使用基于颜色/强度的交互式分段,射线投射可视化和subvoxel分辨率,用于知识建模的语义网络,以及用于演示的增强版QuickTime VR(Apple Computer,Inc,库比蒂诺,加利福尼亚)电影。结果:从这些模型中,可以得出人体的各种放射学,内窥镜或触觉表现。这是通过解剖学教学,X射线图像与3D解剖学在放射学,胃肠道内窥镜检查中的关联,超声图像与3D解剖学在内窥镜超声中的相关性以及颞骨手术中的钻探模拟相关的示例显示的。结论:所提出的模型为解释人体的放射和内窥镜图像提供了一种现实的训练方法。此外,某些手术程序可以被现实地模拟。作为当前课程的补充,这些模型有可能大大减少教育时间和成本。

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