Graduate School of Informatics, Kyoto University, Japan.
Graduate School of Information Science, Nara Institute of Science and Technology, Japan.
Comput Methods Programs Biomed. 2014 Mar;113(3):725-35. doi: 10.1016/j.cmpb.2013.12.004. Epub 2014 Jan 2.
This paper introduces a new design and application for direct volume manipulation for visualizing the intraoperative liver resection process. So far, interactive volume deformation and resection have been independently handled due to the difficulty of representing elastic behavior of volumetric objects. Our framework models global shape editing and discontinuous local deformation by merging proxy geometry encoding and displacement mapping. A local-frame-based elastic model is presented to allow stable editing of the liver shape including bending and twisting while preserving the volume. Several tests using clinical CT data have confirmed the developed software and interface can represent the intraoperative state of liver and produce local views of reference vascular structures, which provides a "road map of vessels" that are key features when approaching occluded tumors during surgery.
本文介绍了一种新的设计和应用,用于直接操作体积以可视化肝切除术的手术过程。到目前为止,由于难以表示体积对象的弹性行为,交互式体积变形和切除一直是独立处理的。我们的框架通过合并代理几何体编码和位移映射来对全局形状编辑和不连续的局部变形进行建模。提出了一种基于局部坐标系的弹性模型,允许对包括弯曲和扭转在内的肝形状进行稳定编辑,同时保持体积不变。使用临床 CT 数据进行的多项测试证实了所开发的软件和界面可以表示肝的手术状态,并生成参考血管结构的局部视图,这为手术中接近闭塞肿瘤时提供了“血管地图”,是关键特征。