The Experts below are selected from a list of 45 Experts worldwide ranked by ideXlab platform

R Robotin - One of the best experts on this subject based on the ideXlab platform.

  • simulation based stress analysis for a 3d modeled Humerus Prosthesis assembly
    SCSS, 2010
    Co-Authors: S Herle, C Marcu, Horea Benea, Liviu Miclea, R Robotin
    Abstract:

    The development of mechanical models of the Humerus-Prosthesis assembly represent a solution for analyzing the behavior of Prosthesis devices under different conditions; some of these behaviors are impossible to reproduce in vivo due to the irreversible phenomenon that can occur. This paper presents a versatile model of the Humerus-Prosthesis assembly. The model is used for stress analysis and displacement distributions under different configurations that correspond to possible in vivo implementations later on. A 3D scanner was used to obtain the virtual model of the Humerus bone. The endoProsthesis was designed using 3D modeling software and the Humerus-Prosthesis assembly was analyzed using Finite Element Analysis software.

  • SCSS - Simulation-Based Stress Analysis for a 3D Modeled Humerus-Prosthesis Assembly
    Innovations in Computing Sciences and Software Engineering, 2010
    Co-Authors: S Herle, C Marcu, Horea Benea, Liviu Miclea, R Robotin
    Abstract:

    The development of mechanical models of the Humerus-Prosthesis assembly represent a solution for analyzing the behavior of Prosthesis devices under different conditions; some of these behaviors are impossible to reproduce in vivo due to the irreversible phenomenon that can occur. This paper presents a versatile model of the Humerus-Prosthesis assembly. The model is used for stress analysis and displacement distributions under different configurations that correspond to possible in vivo implementations later on. A 3D scanner was used to obtain the virtual model of the Humerus bone. The endoProsthesis was designed using 3D modeling software and the Humerus-Prosthesis assembly was analyzed using Finite Element Analysis software.

S Herle - One of the best experts on this subject based on the ideXlab platform.

  • simulation based stress analysis for a 3d modeled Humerus Prosthesis assembly
    SCSS, 2010
    Co-Authors: S Herle, C Marcu, Horea Benea, Liviu Miclea, R Robotin
    Abstract:

    The development of mechanical models of the Humerus-Prosthesis assembly represent a solution for analyzing the behavior of Prosthesis devices under different conditions; some of these behaviors are impossible to reproduce in vivo due to the irreversible phenomenon that can occur. This paper presents a versatile model of the Humerus-Prosthesis assembly. The model is used for stress analysis and displacement distributions under different configurations that correspond to possible in vivo implementations later on. A 3D scanner was used to obtain the virtual model of the Humerus bone. The endoProsthesis was designed using 3D modeling software and the Humerus-Prosthesis assembly was analyzed using Finite Element Analysis software.

  • SCSS - Simulation-Based Stress Analysis for a 3D Modeled Humerus-Prosthesis Assembly
    Innovations in Computing Sciences and Software Engineering, 2010
    Co-Authors: S Herle, C Marcu, Horea Benea, Liviu Miclea, R Robotin
    Abstract:

    The development of mechanical models of the Humerus-Prosthesis assembly represent a solution for analyzing the behavior of Prosthesis devices under different conditions; some of these behaviors are impossible to reproduce in vivo due to the irreversible phenomenon that can occur. This paper presents a versatile model of the Humerus-Prosthesis assembly. The model is used for stress analysis and displacement distributions under different configurations that correspond to possible in vivo implementations later on. A 3D scanner was used to obtain the virtual model of the Humerus bone. The endoProsthesis was designed using 3D modeling software and the Humerus-Prosthesis assembly was analyzed using Finite Element Analysis software.

C Marcu - One of the best experts on this subject based on the ideXlab platform.

  • simulation based stress analysis for a 3d modeled Humerus Prosthesis assembly
    SCSS, 2010
    Co-Authors: S Herle, C Marcu, Horea Benea, Liviu Miclea, R Robotin
    Abstract:

    The development of mechanical models of the Humerus-Prosthesis assembly represent a solution for analyzing the behavior of Prosthesis devices under different conditions; some of these behaviors are impossible to reproduce in vivo due to the irreversible phenomenon that can occur. This paper presents a versatile model of the Humerus-Prosthesis assembly. The model is used for stress analysis and displacement distributions under different configurations that correspond to possible in vivo implementations later on. A 3D scanner was used to obtain the virtual model of the Humerus bone. The endoProsthesis was designed using 3D modeling software and the Humerus-Prosthesis assembly was analyzed using Finite Element Analysis software.

  • SCSS - Simulation-Based Stress Analysis for a 3D Modeled Humerus-Prosthesis Assembly
    Innovations in Computing Sciences and Software Engineering, 2010
    Co-Authors: S Herle, C Marcu, Horea Benea, Liviu Miclea, R Robotin
    Abstract:

    The development of mechanical models of the Humerus-Prosthesis assembly represent a solution for analyzing the behavior of Prosthesis devices under different conditions; some of these behaviors are impossible to reproduce in vivo due to the irreversible phenomenon that can occur. This paper presents a versatile model of the Humerus-Prosthesis assembly. The model is used for stress analysis and displacement distributions under different configurations that correspond to possible in vivo implementations later on. A 3D scanner was used to obtain the virtual model of the Humerus bone. The endoProsthesis was designed using 3D modeling software and the Humerus-Prosthesis assembly was analyzed using Finite Element Analysis software.

Horea Benea - One of the best experts on this subject based on the ideXlab platform.

  • simulation based stress analysis for a 3d modeled Humerus Prosthesis assembly
    SCSS, 2010
    Co-Authors: S Herle, C Marcu, Horea Benea, Liviu Miclea, R Robotin
    Abstract:

    The development of mechanical models of the Humerus-Prosthesis assembly represent a solution for analyzing the behavior of Prosthesis devices under different conditions; some of these behaviors are impossible to reproduce in vivo due to the irreversible phenomenon that can occur. This paper presents a versatile model of the Humerus-Prosthesis assembly. The model is used for stress analysis and displacement distributions under different configurations that correspond to possible in vivo implementations later on. A 3D scanner was used to obtain the virtual model of the Humerus bone. The endoProsthesis was designed using 3D modeling software and the Humerus-Prosthesis assembly was analyzed using Finite Element Analysis software.

  • SCSS - Simulation-Based Stress Analysis for a 3D Modeled Humerus-Prosthesis Assembly
    Innovations in Computing Sciences and Software Engineering, 2010
    Co-Authors: S Herle, C Marcu, Horea Benea, Liviu Miclea, R Robotin
    Abstract:

    The development of mechanical models of the Humerus-Prosthesis assembly represent a solution for analyzing the behavior of Prosthesis devices under different conditions; some of these behaviors are impossible to reproduce in vivo due to the irreversible phenomenon that can occur. This paper presents a versatile model of the Humerus-Prosthesis assembly. The model is used for stress analysis and displacement distributions under different configurations that correspond to possible in vivo implementations later on. A 3D scanner was used to obtain the virtual model of the Humerus bone. The endoProsthesis was designed using 3D modeling software and the Humerus-Prosthesis assembly was analyzed using Finite Element Analysis software.

Liviu Miclea - One of the best experts on this subject based on the ideXlab platform.

  • simulation based stress analysis for a 3d modeled Humerus Prosthesis assembly
    SCSS, 2010
    Co-Authors: S Herle, C Marcu, Horea Benea, Liviu Miclea, R Robotin
    Abstract:

    The development of mechanical models of the Humerus-Prosthesis assembly represent a solution for analyzing the behavior of Prosthesis devices under different conditions; some of these behaviors are impossible to reproduce in vivo due to the irreversible phenomenon that can occur. This paper presents a versatile model of the Humerus-Prosthesis assembly. The model is used for stress analysis and displacement distributions under different configurations that correspond to possible in vivo implementations later on. A 3D scanner was used to obtain the virtual model of the Humerus bone. The endoProsthesis was designed using 3D modeling software and the Humerus-Prosthesis assembly was analyzed using Finite Element Analysis software.

  • SCSS - Simulation-Based Stress Analysis for a 3D Modeled Humerus-Prosthesis Assembly
    Innovations in Computing Sciences and Software Engineering, 2010
    Co-Authors: S Herle, C Marcu, Horea Benea, Liviu Miclea, R Robotin
    Abstract:

    The development of mechanical models of the Humerus-Prosthesis assembly represent a solution for analyzing the behavior of Prosthesis devices under different conditions; some of these behaviors are impossible to reproduce in vivo due to the irreversible phenomenon that can occur. This paper presents a versatile model of the Humerus-Prosthesis assembly. The model is used for stress analysis and displacement distributions under different configurations that correspond to possible in vivo implementations later on. A 3D scanner was used to obtain the virtual model of the Humerus bone. The endoProsthesis was designed using 3D modeling software and the Humerus-Prosthesis assembly was analyzed using Finite Element Analysis software.