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Computer Methods in Biomechanics and Biomedical Engineering 2
J. Middleton, Gyan Pande, M. L. Jones, J. Middleton, Gyan Pande, M. L. Jones
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Computer Methods in Biomechanics and Biomedical Engineering 2
J. Middleton, Gyan Pande, M. L. Jones, J. Middleton, Gyan Pande, M. L. Jones
Informazioni sul libro
Contains papers presented at the Third International Symposium on Computer Methods in Biomechanics and Biomedical Engineering (1997), which provide evidence that computer-based models, and in particular numerical methods, are becoming essential tools for the solution of many problems encountered in the field of biomedical engineering. The range of subject areas presented include the modeling of hip and knee joint replacements, assessment of fatigue damage in cemented hip prostheses, nonlinear analysis of hard and soft tissue, methods for the simulation of bone adaptation, bone reconstruction using implants, and computational techniques to model human impact. Computer Methods in Biomechanics and Biomedical Engineering also details the application of numerical techniques applied to orthodontic treatment together with introducing new methods for modeling and assessing the behavior of dental implants, adhesives, and restorations. For more information, visit the "http://www.uwcm.ac.uk/biorome/international symposium on Computer Methods in Biomechanics and Biomedical Engineering/home page, or "http://www.gbhap.com/Computer_Methods_Biomechanic s_Biome dical_Engineering/" the home page for the journal.
Domande frequenti
Informazioni
1. MULTIBODY SYSTEMS AND JOINT MODELS
ANATOMICAL MODELS OF DIARTHRODIAL JOINTS: RIGID MULTIBODY SYSTEMS AND DEFORMABLE STRUCTURES
1. ABSTRACT
2. INTRODUCTION
3. RIGID BODY MODELS
3.1. Equations of motion
3.2. Motion constraints
Indice dei contenuti
- Cover
- Half Title
- Title Page
- Copyright Page
- Table of Contents
- Preface
- Contributors
- 1. Multibody Systems and Joint Models
- 2. Hip Replacements: Prosthesis/Cement/Bone Analysis
- 3. Bone Adaptation, Structural Models and Architecture
- 4. Spine and Vertebra Mechanics
- 5. Reconstructive Surgery, Virtual Reality and Implant Analysis
- 6. Soft Tissue Structures, Contact and Biofluid Mechanics
- 7. Dental Materials, Behaviour and Biomechanics
- 8. Craniofacial Mechanics and Diagnostic Methods