Handbook Of Active Materials For Medical Devices


Handbook Of Active Materials For Medical Devices
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Handbook Of Active Materials For Medical Devices


Handbook Of Active Materials For Medical Devices
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Author : Andres Diaz Lantada
language : en
Publisher: CRC Press
Release Date : 2011-09-28

Handbook Of Active Materials For Medical Devices written by Andres Diaz Lantada and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2011-09-28 with Science categories.


This book covers biodevices, mainly implantable or quirurgical, for the diagnosis or treatment of different pathologies, which benefit from the use of active materials as sensors or actuators. Such active or "intelligent" materials are capable of responding in a controlled way to different external physical or chemical stimuli by changing some of t



Handbook Of Materials For Medical Devices


Handbook Of Materials For Medical Devices
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Author : J.R. Davis
language : en
Publisher:
Release Date : 2003

Handbook Of Materials For Medical Devices written by J.R. Davis and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2003 with categories.




Handbook Of Active Materials For Medical Devices


Handbook Of Active Materials For Medical Devices
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Author : Andres Diaz Lantada
language : en
Publisher: CRC Press
Release Date : 2011-09-28

Handbook Of Active Materials For Medical Devices written by Andres Diaz Lantada and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2011-09-28 with Technology & Engineering categories.


This book covers biodevices, mainly implantable or quirurgical, for the diagnosis or treatment of different pathologies, which benefit from the use of active materials as sensors or actuators. Such active or "intelligent" materials are capable of responding in a controlled way to different external physical or chemical stimuli by changing some of their properties. These materials can be used to design and develop sensors, actuators, and multifunctional systems with a large number of applications for developing biodevices and medical appliances. Current work on these fields entails problems related to synthesis, characterization, modeling, simulation, processing, and prototyping technologies, as well as device testing and validation, all of which are treated in depth in this book, for the several types of active or intelligent materials covered. The research presented in this book helps further development of medical devices, based on the additional functionalities that the use of active or "intelligent" materials, both as sensors and actuators, supplies. The main results exposed may help with the industrial expansion of this kind of materials as part of more complex systems.



The Medical Device R D Handbook


The Medical Device R D Handbook
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Author : Theodore R. Kucklick
language : en
Publisher: CRC Press
Release Date : 2005-11-21

The Medical Device R D Handbook written by Theodore R. Kucklick and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2005-11-21 with Medical categories.


The Medical Device R&D Handbook presents a wealth of information for the hands-on design and building of medical devices. Detailed information on such diverse topics as catheter building, prototyping, materials, processes, regulatory issues, and much more are available in this convenient handbook for the first time. The Medical Device R&D Ha



Electrically Active Materials For Medical Devices


Electrically Active Materials For Medical Devices
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Author : Syed A M Tofail
language : en
Publisher: World Scientific
Release Date : 2016-08-04

Electrically Active Materials For Medical Devices written by Syed A M Tofail and has been published by World Scientific this book supported file pdf, txt, epub, kindle and other format this book has been release on 2016-08-04 with Technology & Engineering categories.


Stress induced electrical charges, action potential and electret behavior of bone, muscles, skin and nerve cells have been known for some time. Electrically Active Materials for Medical Devices builds on this knowledge and encourages readers to understand and exploit electrical activity in biomaterials from native, derived, or completely synthetic origin, or a combination thereof. It presents data and insights from both historic and contemporary research that spans over six decades with a view to generate convergence of interdisciplinary knowledge and skills. Divided into four parts, this book first introduces the reader to a general overview of electrically active materials in biology and biomedical science and describes important concepts and pioneering discoveries. The second part discusses common types of materials that are known to generate electrical activity and lays the foundation for these materials for use in medical devices. The third part gives examples of where electrically active materials have been examined for device application. The final part looks for upcoming and emerging concepts, tools and methodologies that are expected to shape the future profile of this field of converging science. Written by specialists in their respective fields, it has been specifically targeted at a readership of professionals, graduate students and researchers in the fields of biomedical engineering, physics, chemistry biology and clinical medicine.



Handbook Of Polymer Applications In Medicine And Medical Devices


Handbook Of Polymer Applications In Medicine And Medical Devices
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Author : André Colas
language : en
Publisher: Elsevier Inc. Chapters
Release Date : 2013-12-05

Handbook Of Polymer Applications In Medicine And Medical Devices written by André Colas and has been published by Elsevier Inc. Chapters this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-12-05 with Technology & Engineering categories.


Silicone materials have been widely used in medicine for over 60 years. Available in a variety of material types, they have unique chemical and physical properties that manifest in excellent biocompatibility and biodurability for many applications. Silicone elastomers have remarkably low glass-transition temperatures and maintain their flexibility over a wide temperature range, enabling them to withstand conditions from cold storage to steam autoclaving. They have high permeability to gases and many drugs, advantageous respectively in wound care or in transdermal drug delivery. They have low surface tension and remarkable chemical stability, enabling biocompatibility and biodurability in many long-term implant applications.



Handbook Of Polymer Applications In Medicine And Medical Devices


Handbook Of Polymer Applications In Medicine And Medical Devices
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Author : Zheng Zhang
language : en
Publisher: Elsevier Inc. Chapters
Release Date : 2013-12-05

Handbook Of Polymer Applications In Medicine And Medical Devices written by Zheng Zhang and has been published by Elsevier Inc. Chapters this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-12-05 with Technology & Engineering categories.


The design and development of tissue-engineered products has benefited from many years of clinical utilization of a wide range of biodegradable polymers. Newly developed biodegradable polymers and modifications of previously developed biodegradable polymers have enhanced the tools available for creating clinically important tissue-engineering applications. Insights gained from studies of cell-matrix interactions, cell-cell signaling, and organization of cellular components, are placing increased demands on medical implants to interact with the patient’s tissue in a more biologically appropriate fashion. Whereas in the twentieth century biocompatibility was largely equated with eliciting no harmful response, the biomaterials of the twenty first century will have to elicit tissue responses that support healing or regeneration of the patient’s own tissue. This chapter surveys the universe of those biodegradable polymers that may be useful in the development of medical implants and tissue-engineered products. Here, we distinguish between biologically derived polymers and synthetic polymers. The materials are described in terms of their chemical composition, breakdown products, mechanism of breakdown, mechanical properties, and clinical limitations. Also discussed are product design considerations in processing of biomaterials into a final form (e.g., gel, membrane, matrix) that will effect the desired tissue response.



Handbook Of Human Factors In Medical Device Design


Handbook Of Human Factors In Medical Device Design
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Author : Matthew Bret Weinger
language : en
Publisher: CRC Press
Release Date : 2010-12-13

Handbook Of Human Factors In Medical Device Design written by Matthew Bret Weinger and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2010-12-13 with Technology & Engineering categories.


Developed to promote the design of safe, effective, and usable medical devices, Handbook of Human Factors in Medical Device Design provides a single convenient source of authoritative information to support evidence-based design and evaluation of medical device user interfaces using rigorous human factors engineering principles. It offers guidance



Handbook Of Polymer Applications In Medicine And Medical Devices


Handbook Of Polymer Applications In Medicine And Medical Devices
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Author : Kayvon Modjarrad
language : en
Publisher: Elsevier
Release Date : 2013-12-05

Handbook Of Polymer Applications In Medicine And Medical Devices written by Kayvon Modjarrad and has been published by Elsevier this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-12-05 with Technology & Engineering categories.


While the prevalence of plastics and elastomers in medical devices is now quite well known, there is less information available covering the use of medical devices and the applications of polymers beyond medical devices, such as in hydrogels, biopolymers and silicones beyond enhancement applications, and few books in which these are combined into a single reference. This book is a comprehensive reference source, bringing together a number of key medical polymer topics in one place for a broad audience of engineers and scientists, especially those currently developing new medical devices or seeking more information about current and future applications. In addition to a broad range of applications, the book also covers clinical outcomes and complications arising from the use of the polymers in the body, giving engineers a vital insight into the real world implications of the devices they’re creating. Regulatory issues are also covered in detail. The book also presents the latest developments on the use of polymers in medicine and development of nano-scale devices. Gathers discussions of a large number of applications of polymers in medicine in one place Provides an insight into both the legal and clinical implications of device design Relevant to industry, academic and medical professionals Presents the latest developments in the field, including medical devices on a nano-scale



The Medical Device R D Handbook Second Edition


The Medical Device R D Handbook Second Edition
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Author : Theodore R. Kucklick
language : en
Publisher: CRC Press
Release Date : 2012-12-05

The Medical Device R D Handbook Second Edition written by Theodore R. Kucklick and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012-12-05 with Medical categories.


Exploring the practical, entrepreneurial, and historical aspects of medical device development, this second edition of The Medical Device R&D Handbook provides a how-to guide for medical device product development. The book offers knowledge of practical skills such as prototyping, plastics selection, and catheter construction, allowing designers to apply these specialized techniques for greater innovation and time saving. The author discusses the historical background of various technologies, helping readers understand how and why certain devices were developed. The text also contains interviews with leaders in the industry who offer their vast experience and insights on how to start and grow successful companies—both what works and what doesn’t work. This updated and expanded edition adds new information to help meet the challenges of the medical device industry, including strategic intellectual property management, operating room observation protocol, and the use of new technologies and new materials in device development.