Medical Device Technologies: A Systems Based Overview Using Engineering Standards
Autor Gail Bauraen Limba Engleză Hardback – 26 noi 2020
Each medical device chapter begins with an exposition of appropriate physiology, mathematical modeling or biocompatibility issues and clinical need. A device system description and system diagram provide details on technology function and administration of diagnosis and/or therapy. This systems approach enables the reader to quickly identify the relationships between devices. An accompanying instructor site containing answers to end of chapter exercises, image collections, datasets and solutions for the lab experiments is also included.
- Covers current research, design issues and engineering standards
- Includes three significant Food and Drug Administration (FDA) recall case studies which have impacted FDA medical device regulation
- Presents exercises at the end of each chapter, including problems, analysis exercises and four questions from assigned primary literature
- Provides eight laboratory experiments that are detailed to provide hands-on reinforcement of device concepts
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Specificații
ISBN-10: 0128119845
Pagini: 622
Dimensiuni: 191 x 235 x 39 mm
Greutate: 1.32 kg
Ediția:2
Editura: ELSEVIER SCIENCE
Public țintă
Biomedical Engineers, Junior, Senior and Graduate Students of Biomedical Engineering and Bioengineering; Electrical and Electronic Engineers; Clinical EngineersCuprins
Part 1: Introduction to Diagnosis and Therapy Devices Electrocardiographs Pacemakers External Defibrillators Internal Cardioverter Defibrillators Heart Valves Catheters Stents and Grafts Blood Pressure Monitors Hemodialyzers Ventilators Pulse Oximeters Thermometers Electroencephalographs Neurostimulators Cochlear Implants Functional Electrical Stimulators Hip and Knee Prosthesis Drug-Eluting Stents Artificial Pancreas
Part 2: Laboratory Experiments
Recenzii
Descriere
Medical Device Technologies: A Systems Based Overview Using Engineering Standards, Second Edition, is a comprehensive overview of medical device technology, with a unified approach to each device area covering technical operation, clinical need, regulatory issues and standards and historical devices. It takes a systems-based view, balancing breadth with depth to give an accessible introduction to this field. Close ties are drawn between the design, the product and the patient. Exercises at the end of each chapter include traditional homework problems, analysis exercises and four questions from assigned primary literature. Eight laboratory experiments in both electrical and mechanical medical devices are explored.
Each medical device chapter begins with an exposition of appropriate physiology, mathematical modeling or biocompatibility issues and clinical need. A device system description and system diagram provide details on technology function and administration of diagnosis and/or therapy. This systems approach enables the reader to quickly identify the relationships between devices. An accompanying instructor site containing answers to end of chapter exercises, image collections, datasets and solutions for the lab experiments is also included.