This book covers the latest research and relevant case studies about emerging resorbable materials, their synthesis, characterization, and applications in various domains. It explores the applications of resorbable composites in bone implants, drug delivery systems, wound healing, hydrogels, biomaterials for bone fracture fixations, and other medical implants. It also highlights the advantages associated with bioresorbable composites such as ease of modification of the chemical, physical, surface, and biomimetic properties of polymers which makes them a preferred composite over many other…mehr
This book covers the latest research and relevant case studies about emerging resorbable materials, their synthesis, characterization, and applications in various domains. It explores the applications of resorbable composites in bone implants, drug delivery systems, wound healing, hydrogels, biomaterials for bone fracture fixations, and other medical implants. It also highlights the advantages associated with bioresorbable composites such as ease of modification of the chemical, physical, surface, and biomimetic properties of polymers which makes them a preferred composite over many other options. This book will be of interest to researchers, scientists, and industry professionals working in the areas of material science, biomedical engineering, pharma, health care, and allied fields.
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Autorenporträt
Dr. Arbind Prasad has completed his Ph.D. (mechanical engineering) from the Indian Institute of Technology Guwahati, Assam, India. He has earned a gold medal in his M.Tech. He is currently working as an assistant professor and head of mechanical engineering in the Department of Science, Technology and Technical Education, Government of Bihar, at Katihar Engineering College, Katihar, Bihar, India. He has four granted patents out of his research work. He has 14 international journal papers, edited 12 books (Wiley Publishing, CRC Press (Taylor & Francis) USA, De Gruyter, Elsevier, Apple Academic, etc.), 33 book chapters, and 15 reputed international conference papers to his credit. He has completed numerous projects funded by the state government. He is an associate editor for the International Journal of Materials, Manufacturing and Sustainable Technologies (IJMMST) and an early career editor for the International Journal of Mathematical, Engineering and Management Sciences (IJMEMS).
Prof. Vimal Katiyar is currently serving as a professor in the Chemical Engineering Department at the Indian Institute of Technology Guwahati (IIT Guwahati), Assam, India. He has vast experience in teaching, research, and administrative programs. He has published more than 150 articles in various reputed international journals. He holds about 29 granted/published patents to his credit. He has edited six books. His research interests include biodegradable polymers, resorbable scaffolds, plastic and its processing, biomaterials, resorbable polymers, processing, nanomaterials, drug delivery, 3D bioprinting, internal fixation devices, sustainable polymer synthesis and scale-up activities, polymer processing, rheology, structure property relationship, development of polymer-based nanomaterials and its technologies polymer degradation and migration toxicological studies etc.
Inhaltsangabe
Introduction to resorbable polymeric composites for bioimplant and fixations.- Processing and characterization of resorbable composites.- Resorbable composites for Hard tissue engineering.- Drug eluting resorbable implants and fixation devices.- Polymeric hydrogels and bioimplants.- PLA based composites for tissue engineering.- Rheological studies of resorbable polymeric nanocomposites.- Materials design and migration studies for bone tissue engineering.- Bioimplants with 3D and 4D Additive Manufacturing Materials.
Introduction to resorbable polymeric composites for bioimplant and fixations.- Processing and characterization of resorbable composites.- Resorbable composites for Hard tissue engineering.- Drug eluting resorbable implants and fixation devices.- Polymeric hydrogels and bioimplants.- PLA based composites for tissue engineering.- Rheological studies of resorbable polymeric nanocomposites.- Materials design and migration studies for bone tissue engineering.- Bioimplants with 3D and 4D Additive Manufacturing Materials.
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