ノンパラメトリック最適化を用いた整形外科設計の基礎<br>Fundamentals of Orthopedic Design with Non-parametric Optimization

個数:1
紙書籍版価格
¥44,489
  • 電子書籍
  • ポイントキャンペーン

ノンパラメトリック最適化を用いた整形外科設計の基礎
Fundamentals of Orthopedic Design with Non-parametric Optimization

  • 著者名:Al Ali, Musaddiq
  • 価格 ¥32,381 (本体¥29,438)
  • Springer(2024/03/26発売)
  • 春うらら!Kinoppy 電子書籍・電子洋書 全点ポイント30倍キャンペーン(~3/15)
  • ポイント 8,820pt (実際に付与されるポイントはご注文内容確認画面でご確認下さい)
  • 言語:ENG
  • ISBN:9789819710393
  • eISBN:9789819710409

ファイル: /

Description

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 additivemanufacturing 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.


Table of 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.