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Fundamentals of Orthopedic Design with Non-parametric Optimization

Title
Fundamentals of Orthopedic Design with Non-parametric Optimization [electronic resource] / by Musaddiq Al Ali.
ISBN
9789819710409
Edition
1st ed. 2024.
Publication
Singapore : Springer Nature Singapore : Imprint: Springer, 2024.
Physical Description
1 online resource (XII, 137 p.) 51 illus., 39 illus. in color.
Local Notes
Access is available to the Yale community.
Access and use
Access restricted by licensing agreement.
Summary
This book introduces a fundamental understanding of orthopedic design for both engineers and medical staff. It addresses the gap and mystery that often exists between these two fields and provides a common ground for understanding. The book covers various aspects of orthopedic design, including the anatomy and biomechanics of bones and joints, the materials used in orthopedic devices, and the testing and evaluation of orthopedic devices. It also introduces computer-aided design with additive manufacturing in a practical sense, including the principles of non-parametric optimization (topology and shape optimization) in a scientific and practical way. The author provides dedicated examples and research studies to further clarify the concepts presented in the book and includes some of their own peer-reviewed papers to support the material. Additionally, it covers the practical applications of computer-aided design and additive manufacturing in orthopedic design, including the use of virtual prototyping, computer simulation, and 3D printing techniques. The book aims to provide a comprehensive guide to orthopedic design and the latest advancements in the field.
Variant and related titles
Springer ENIN.
Other formats
Printed edition:
Printed edition:
Printed edition:
Format
Books / Online
Language
English
Added to Catalog
April 10, 2024
Contents
Chapter 1. Metallic Orthopaedics history and challenges, and why designing
Chapter 2
The basis of metallic strength and frailer theories
Chapter 3. The bio-mechanical interaction principal
Chapter 4. The design methodologies of the prosthesis using topology optimization
Chapter 5. Medical challenges
Chapter 6. Non-parametric optimization theories
Chapter 7. Orthopaedics modelling
Chapter 8. Case studies.
Also listed under
SpringerLink (Online service)
Citation

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