Biomedical Devices: Design, Prototyping, and Manufacturing features fundamental discussions of all facets of materials processing and manufacturing processes across a wide range of medical devices and artificial tissues. -Represents the first compilation of information on the design, prototyping, an
Biomedical Devices: Materials, Design, and Manufacturing
β Scribed by Raymond H. W. Lam, Weiqiang Chen
- Publisher
- Springer International Publishing
- Year
- 2019
- Tongue
- English
- Leaves
- 388
- Edition
- 1st ed. 2019
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
This textbook provides essential knowledge for biomedical product development, including material properties, fabrication processes and design techniques for different applications, as well as process design and optimization. This book is multidisciplinary and readers can learn techniques to apply acquired knowledge for various applications of biomedical design. Further, this book encourages readers to discover and convert newly reported technologies into products and services for the future development of biomedical applications. This is an ideal book for upper-level undergraduate and graduate students, engineers, technologists, and researchers working in the area of biomedical engineering and manufacturing.
This book also:
- Provides a comprehensive set of fundamental knowledge for engineering students and entry level engineers to design biomedical devices
- Offers a unique approach to manufacturing of biomedical devices by integrating and formulating different considerations in process design tasks into optimization problems
- Provides a broad range of application examples to guide readers through the thinking process of designing and manufacturing biomedical devices, from basic understanding about the requirements and regulations to a set of manufacturing parameters
β¦ Table of Contents
Front Matter ....Pages i-xvii
Introduction to Biomedical Devices (Raymond H. W. Lam, Weiqiang Chen)....Pages 1-30
Front Matter ....Pages 31-31
Basic Material Properties (Raymond H. W. Lam, Weiqiang Chen)....Pages 33-60
Metals and Alloys (Raymond H. W. Lam, Weiqiang Chen)....Pages 61-87
Polymers (Raymond H. W. Lam, Weiqiang Chen)....Pages 89-116
Ceramics (Raymond H. W. Lam, Weiqiang Chen)....Pages 117-138
Front Matter ....Pages 139-139
Common Manufacturing Process (Raymond H. W. Lam, Weiqiang Chen)....Pages 141-182
Medical Imaging and Reverse Engineering (Raymond H. W. Lam, Weiqiang Chen)....Pages 183-214
Laser Metal Processing (Raymond H. W. Lam, Weiqiang Chen)....Pages 215-239
Front Matter ....Pages 241-241
Biocompatible Material Selection (Raymond H. W. Lam, Weiqiang Chen)....Pages 243-266
Design for Manufacturing (Raymond H. W. Lam, Weiqiang Chen)....Pages 267-296
Scaffold Design (Raymond H. W. Lam, Weiqiang Chen)....Pages 297-327
Process Design Optimization (Raymond H. W. Lam, Weiqiang Chen)....Pages 329-368
Back Matter ....Pages 369-379
β¦ Subjects
Biomedicine; Biomedical Engineering/Biotechnology; Biomaterials; Engineering Design; Biomedical Engineering
π SIMILAR VOLUMES
<p><span>This book provides a comprehensive overview of the development of implants, from the selection of materials to the outcome of the process. It covers various steps, including biocompatible material, synthesis, and characterization, compatibility and limitations of materials, specific implant
<p>βThe last decades have seen remarkable advances in computerβaided design, engineering and manufacturing technologies, multiβvariable simulation tools, medical imaging, biomimetic design, rapid prototyping, micro and nanomanufacturing methods and information management resources, all of which prov
<p>The functional materials with the most promising outlook have the ability to precisely adjust the biological phenomenon in a controlled mode. Engineering of advanced bio- materials has found striking applications in used for biomedical and diagnostic device applications, such as cell separation,
Wiley, 2012. β 626 p.<div class="bb-sep"></div>The functional materials with the most promising outlook have the ability to precisely adjust the biological phenomenon in a controlled mode. Engineering of advanced bio- materials has found striking applications in used for biomedical and diagnostic de