Trauma Plating Systems is the first reference and systematic book in the topic of trauma plating system in view of biomechanical, material, biological, and clinical aspects. The effects of these aspects on effectiveness of trauma plating fixation are deeply reviewed, discussed, and challenged from which promising evaluation and development concepts are explored.
This book is divided into five sections: Section I covers general concepts of biomechanical, material, biological, and clinical aspects. Then it provides fundamentals of trauma plating systems, principles of biomechanical evaluation methods, and biomechanics of plating fixation in Section II. Section III reviews current metallic materials with their advantages and disadvantages in plating fixation of bone fractures and new promising materials with their potential benefits to enhance the effectiveness of plating fixation. Section IV represents currently concerned biomechanical-clinical challenges of plating fixation for various bone fractures, and Section V presents current and new development concepts of this type of trauma implants. This book as an accessible and easy usable textbook for various disciplines of audiences who are dealing with trauma plating system and fixation such as orthopedic surgeons, trauma implant manufacturers, biomechanical researchers, biomaterial researchers, and all biomedical or medical students and residents in different levels of education.
Author has been diligent in both engineering and research environments in terms of research, testing, analysis, validation, verification, clinical studies, and technical writing. His main interest and effort is to integrate biomechanical, material, biological, and clinical requirements of orthopedic implants for creation of novel design conception in this industry. He has developed the website http: //orthoimplant-development.com/ for further communication in development of orthopedic implants.
Amirhossein Goharian is a senior engineer in the orthopedic implant industry. He has challenged and improved various engineering areas of orthopedic implants since January 2009. He has worked in all areas of the product development process including design, engineering, testing, computational analysis, quality control, and clinical improvement. He is highly enthusiastic in the field of orthopedic implant development, and attempts to analyze the various engineering challenges using scientific fundamentals. His rigorous studies in conjunction with practical experiences have motivated him to become an author, through which he could share his in-depth knowledge in the engineering and scientific aspects of orthopedic implants from design conception to clinical use. He has previously authored 'Trauma Plating Systems' and 'Osseointegration of Orthopedic Implants' (both published by Elsevier) and 'Osseoconductive Surface Engineering for Orthopedic Implants' is his third book in the area of orthopedic implants. His main concerns and interests in publishing these books are in providing a comprehensive and updated resource for the effective incorporation of the biomechanical, material, biological, and clinical facets of the orthopedic area while simultaneously optimizing the implant design, technology, and features.
Qualifications & Experience: Various aspects of biomedical engineering such as biomaterials, biomechanics, image processing, tissue engineering, bioactive coating, FE and experimental evaluation of orthopaedic implants and soft tissues, in vitro and in-vivo clinical studies, orthopaedic implant clinical investigating, etc.
Qualifications & Experience: Experimental testing of composite biomaterials, Processing of composite biomaterials, Mechanical Evaluation of Orthopedic Implants.