Biofabrication for Orthopedics: Methods, Techniques and Applications
โ Scribed by Wenguo Cui, Xin Zhao, Shen Liu
- Publisher
- Wiley-VCH
- Year
- 2022
- Tongue
- English
- Leaves
- 639
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
Biofabrication for Orthopedics
A comprehensive overview of biofabrication techniques for orthopedics and their novel applications
With an ever-increasing global population and the rise in the occurrence of orthopedic diseases amongst an aging population, it is essential for technological advances to meet this growing medical need. Orthopedic biofabrication is a cutting-edge field that seeks to produce novel clinical solutions to this mounting problem, through the incorporation of revolutionary technologies that have the potential to not only transform healthcare, but also provide highly automated and personalized patient solutions. With the advances in the discipline, there is a significant growing interest in biofabrication for orthopedics in research activity geared towards routine clinical use.
Ideal for a broad readership amongst medical practitioners and scientists, Biofabrication for Orthopedics summarizes all aspects of the topic: detailed information on the technology, along with advanced developments, research progress, and future perspectives on biofabrication for orthopaedicsโparticularly on the potential applications for tissue engineering technologies. In doing so, the book describes the various biomaterialsโnatural and syntheticโuse for orthopedics and discusses the many ways in which these materials can be used in all parts of the body. As such, it offers detailed information on a wide range of applications in the fields of biology and clinical and industrial manufacturing.
Biofabrication for Orthopedics readers will also find:
- Insights into the applications of biofabrication technologies in various bodily functions
- Thorough discussion of different biofabrication techniques used in creating orthopedic products, like stereolithography, cell sheet and organ bioprinting, electrospinning, and microfluidics
- Discussion of a wide range of diverse functions, such as bone implants, skin regeneration, vascularization, meniscus remodeling, and more
Biofabrication for Orthopedics is a useful reference for those in a variety of research fields like medical-related practitioners and scientists, materials science, medicine, and manufacturing, as well as the libraries who support them.
๐ SIMILAR VOLUMES
<p>This volume is intended to provide radiologists, orthopedic surgeons, and other clinicians with an up-to-date review of imaging of the musculoskeletal system. In the first part of the book, the various imaging techniques are discussed in turn, with particular attention to their advantages and dis
<span>This is the first book about the โKenzanโ method for scaffold-free biofabrication, which does not rely on biomaterials as scaffolds to ensure correct multicellular spheroid positioning for building three dimensional construct only made from cells. The book explains the basic principles and con
<span>This is the first book about the โKenzanโ method for scaffold-free biofabrication, whichย does not rely on biomaterials as scaffolds to ensure correct multicellular spheroid positioning for building three dimensional construct only made from cells.ย The book explains the basic principles and co
This book details the role played by analytical chemistry in fostering clinical research. Readers will discover how a broad range of analytical techniques support all phases of clinical research, from early stages to the implementation of practical applications. Moreover, the contributing authors' c
<p>Recent advances not only in the creation of new polymers but also in their processing and production have ushered in huge strides in a variety of biomedical and clinical areas. Orthopedics and dentistry are two such areas that benefit immensely from developments in polymer science and technology.