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    • 6. 发明申请
    • VIRTUAL PROTOTYPING AND TESTING FOR MEDICAL DEVICE DEVELOPMENT
    • 虚拟实验和测试用于医疗设备开发
    • US20110029297A1
    • 2011-02-03
    • US12904994
    • 2010-10-14
    • Robert G. WhirleyMichael V. Chobotov
    • Robert G. WhirleyMichael V. Chobotov
    • G06G7/60G06T17/20
    • G06F17/50A61F2/82G06G7/48G09B23/28
    • A system and method of developing better-designed medical devices, particularly cardiovascular stents and endovascular grafts. The system comprises a geometry generator, a mesh generator, a stress/strain/deformation analyzer, and a visualization tool. In one embodiment, the geometry generator receives three-dimensional volumetric data of an anatomical feature and generates a geometric model. The mesh generator then receives such geometric model of an anatomical feature or an in vitro model and a geometric model of a candidate medical device. In another embodiment, the mesh generator only receives a geometric model of the candidate medical device. Using the geometric model(s) received, the mesh generator creates or generates a mesh or a finite element model. The stress/strain/deformation analyzer then receives the mesh, and the material models and loads of that mesh. Using analysis, preferably non-linear analysis, the stress/strain/deformation analyzer determines the predicted stresses, strains, and deformations on the candidate medical device. Such stresses, strains, and deformations may optionally be simulated visually using a visualization tool.
    • 开发更好设计的医疗设备,特别是心血管支架和血管内移植物的系统和方法。 该系统包括几何生成器,网格发生器,应力/应变/变形分析器和可视化工具。 在一个实施例中,几何生成器接收解剖特征的三维体积数据并生成几何模型。 然后,网格生成器接收解剖特征或候选医疗装置的体外模型和几何模型的几何模型。 在另一个实施例中,网格生成器仅接收候选医疗设备的几何模型。 使用接收的几何模型,网格生成器创建或生成网格或有限元模型。 应力/应变/变形分析仪接收网格,以及该网格的材料模型和载荷。 使用分析,优选非线性分析,应力/应变/变形分析仪确定候选医疗设备上预测的应力,应变和变形。 可以使用可视化工具任意地模拟这种应力,应变和变形。
    • 7. 发明授权
    • Virtual prototyping and testing for medical device development
    • 医疗器械开发的虚拟样机和测试
    • US07840393B1
    • 2010-11-23
    • US09679725
    • 2000-10-04
    • Robert G. WhirleyMichael V. Chobotov
    • Robert G. WhirleyMichael V. Chobotov
    • G06G7/48
    • G06F17/50A61F2/82G06G7/48G09B23/28
    • A system and method of developing better-designed medical devices, particularly cardiovascular stents and endovascular grafts. The system comprises a geometry generator, a mesh generator, a stress/strain/deformation analyzer, and a visualization tool. In one embodiment, the geometry generator receives three-dimensional volumetric data of an anatomical feature and generates a geometric model. The mesh generator then receives such geometric model of an anatomical feature or an in vitro model and a geometric model of a candidate medical device. In another embodiment, the mesh generator only receives a geometric model of the candidate medical device. Using the geometric model(s) received, the mesh generator creates or generates a mesh or a finite element model. The stress/strain/deformation analyzer then receives the mesh, and the material models and loads of that mesh. Using analysis, preferably non-linear analysis, the stress/strain/deformation analyzer determines the predicted stresses, strains, and deformations on the candidate medical device. Such stresses, strains, and deformations may optionally be simulated visually using a visualization tool.
    • 开发更好设计的医疗设备,特别是心血管支架和血管内移植物的系统和方法。 该系统包括几何生成器,网格发生器,应力/应变/变形分析器和可视化工具。 在一个实施例中,几何生成器接收解剖特征的三维体积数据并生成几何模型。 然后,网格生成器接收解剖特征或候选医疗装置的体外模型和几何模型的几何模型。 在另一个实施例中,网格生成器仅接收候选医疗设备的几何模型。 使用接收的几何模型,网格生成器创建或生成网格或有限元模型。 应力/应变/变形分析仪接收网格,以及该网格的材料模型和载荷。 使用分析,优选非线性分析,应力/应变/变形分析仪确定候选医疗设备上预测的应力,应变和变形。 可以使用可视化工具任意地模拟这种应力,应变和变形。