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A PACS-based interface for 3D anatomical structures visualization and surgical planning

机译:用于3D解剖结构的PACS的界面可视化和手术规划

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The interpretation of radiological image is routine but it remains a rather difficult task for physicians. It requires complex mental processes, that permit translation from 2D slices into 3D localization and volume determination of visible diseases. An easier and more extensive visualization and exploitation of medical images can be reached through the use of computer-based systems that provide real help from patient admission to post-operative follow-up. In this way, we have developed a 3D visualization interface linked to a PACS database that allows manipulation and interaction on virtual organs delineated from CT-scan or MRI. This software provides the 3D real-time surface rendering of anatomical structures, an accurate evaluation of volumes and distances and the improvement of radiological image analysis and exam annotation through a negatoscope tool. It also provides a tool for surgical planning allowing the positioning of an interactive laparoscopic instrument and the organ resection. The software system could revolutionize the field of computerized imaging technology. Indeed, it provides a handy and portable tool for pre-operative and intra-operative analysis of anatomy and pathology in various medical fields. This constitutes the first step of the future development of augmented reality and surgical simulation systems.
机译:放射图像的解释是常规,但它对医生仍然是一个相当困难的任务。它需要复杂的心理过程,允许从2D切片翻译成3D定位和可见疾病的体积测定。可以通过使用基于计算机的系统来达到更容易和更广泛的身体可视化和对医学图像的开发,这些系统提供患者入场的真实帮助到操作后的随访。通过这种方式,我们开发了一个链接到PACS数据库的3D可视化接口,允许在从CT-Scan或MRI中描绘的虚拟器官上操纵和交互。该软件提供了解剖结构的3D实时表面渲染,准确评估了体积和距离的准确评估以及通过抗癌工具改善放射图像分析和考试注释。它还提供了一种用于手术规划的工具,允许互动腹腔镜仪器和器官切除的定位。软件系统可以彻底改变计算机成像技术领域。实际上,它为各种医疗领域的解剖学和病理学进行了预携带和术语,提供了一种便携式的便携式工具。这构成了增强现实和外科仿真系统未来发展的第一步。

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