Encyclopedia Of Medical Devices And Instrumentation Capacitive Microsensors For Biomedical Applications

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Encyclopedia Of Medical Devices And Instrumentation Capacitive Microsensors For Biomedical Applications
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Author : John G. Webster
language : en
Publisher:
Release Date : 2006
Encyclopedia Of Medical Devices And Instrumentation Capacitive Microsensors For Biomedical Applications written by John G. Webster and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2006 with Biomedical engineering categories.
The articles in The Encyclopedia of Medical Devices and Instrumentation focus on what is currently useful or is likely to be useful in future medicine. They answer the question, "What are the branches of medicine and how does technology assist each of them?" Articles focus on the practice of medicine that is assisted by devices, rather than including, for example, the use of drugs to treat disease.
Encyclopedia Of Medical Devices And Instrumentation Capacitive Microsensors For Biomedical Applications Drug Infusion Systems
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Author : John G. Webster
language : en
Publisher: Wiley-Interscience
Release Date : 2006-04-07
Encyclopedia Of Medical Devices And Instrumentation Capacitive Microsensors For Biomedical Applications Drug Infusion Systems written by John G. Webster and has been published by Wiley-Interscience this book supported file pdf, txt, epub, kindle and other format this book has been release on 2006-04-07 with Medical categories.
The articles in The Encyclopedia of Medical Devices and Instrumentation focus on what is currently useful or is likely to be useful in future medicine. They answer the question, What are the branches of medicine and how does technology assist each of them? Articles focus on the practice of medicine that is assisted by devices, rather than including, for example, the use of drugs to treat disease. The title is the only resource on the market dealing with the subject in encyclopedic detail. * Accessible to practitioners with a broad range of backgrounds from students to researchers and physicians * Articles cover the latest developments such as nanotechnology, fiber optics, and signal processing
Medical Instrumentation
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Author : John G. Webster
language : en
Publisher: John Wiley & Sons
Release Date : 2020-05-11
Medical Instrumentation written by John G. Webster and has been published by John Wiley & Sons this book supported file pdf, txt, epub, kindle and other format this book has been release on 2020-05-11 with Science categories.
Provides a comprehensive overview of the basic concepts behind the application and designs of medical instrumentation This premiere reference on medical instrumentation describes the principles, applications, and design of the medical instrumentation most commonly used in hospitals. It places great emphasis on design principles so that scientists with limited background in electronics can gain enough information to design instruments that may not be commercially available. The revised edition includes new material on microcontroller-based medical instrumentation with relevant code, device design with circuit simulations and implementations, dry electrodes for electrocardiography, sleep apnea monitor, Infusion pump system, medical imaging techniques and electrical safety. Each chapter includes new problems and updated reference material that covers the latest medical technologies. Medical Instrumentation: Application and Design, Fifth Edition covers general concepts that are applicable to all instrumentation systems, including the static and dynamic characteristics of a system, the engineering design process, the commercial development and regulatory classifications, and the electrical safety, protection, codes and standards for medical devices. The readers learn about the principles behind various sensor mechanisms, the necessary amplifier and filter designs for analog signal processing, and the digital data acquisition, processing, storage and display using microcontrollers. The measurements of both cardiovascular dynamics and respiratory dynamics are discussed, as is the developing field of biosensors. The book also covers general concepts of clinical laboratory instrumentation, medical imaging, various therapeutic and prosthetic devices, and more. Emphasizes design throughout so scientists and engineers can create medical instruments Updates the coverage of modern sensor signal processing New material added to the chapter on modern microcontroller use Features revised chapters, descriptions, and references throughout Includes many new worked out examples and supports student problem-solving Offers updated, new, and expanded materials on a companion webpage Supplemented with a solutions manual containing complete solutions to all problems Medical Instrumentation: Application and Design, Fifth Edition is an excellent book for a senior to graduate-level course in biomedical engineering and will benefit other health professionals involved with the topic.
Encyclopedia Of Medical Devices And Instrumentation Hydrocephalus Tools For Diagnosis And Treatment Of Monoclonal Antibodies
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Author : John G. Webster
language : en
Publisher: Wiley-Interscience
Release Date : 2006-04-07
Encyclopedia Of Medical Devices And Instrumentation Hydrocephalus Tools For Diagnosis And Treatment Of Monoclonal Antibodies written by John G. Webster and has been published by Wiley-Interscience this book supported file pdf, txt, epub, kindle and other format this book has been release on 2006-04-07 with Medical categories.
The articles in The Encyclopedia of Medical Devices and Instrumentation focus on what is currently useful or is likely to be useful in future medicine. They answer the question, What are the branches of medicine and how does technology assist each of them? Articles focus on the practice of medicine that is assisted by devices, rather than including, for example, the use of drugs to treat disease. The title is the only resource on the market dealing with the subject in encyclopedic detail. * Accessible to practitioners with a broad range of backgrounds from students to researchers and physicians * Articles cover the latest developments such as nanotechnology, fiber optics, and signal processing
Encyclopedia Of Medical Devices And Instrumentation Radiotherapy Heavy Ion X Rays Production Of
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Author : John G. Webster
language : en
Publisher: Wiley-Interscience
Release Date : 2006-04-07
Encyclopedia Of Medical Devices And Instrumentation Radiotherapy Heavy Ion X Rays Production Of written by John G. Webster and has been published by Wiley-Interscience this book supported file pdf, txt, epub, kindle and other format this book has been release on 2006-04-07 with Medical categories.
The articles in The Encyclopedia of Medical Devices and Instrumentation focus on what is currently useful or is likely to be useful in future medicine. They answer the question, What are the branches of medicine and how does technology assist each of them? Articles focus on the practice of medicine that is assisted by devices, rather than including, for example, the use of drugs to treat disease. The title is the only resource on the market dealing with the subject in encyclopedic detail. * Accessible to practitioners with a broad range of backgrounds from students to researchers and physicians * Articles cover the latest developments such as nanotechnology, fiber optics, and signal processing
Encyclopedia Of Medical Devices And Instrumentation Alloys Shape Memory Brachytherapy Intravascular
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Author : John G. Webster
language : en
Publisher: Wiley-Interscience
Release Date : 2006-04-07
Encyclopedia Of Medical Devices And Instrumentation Alloys Shape Memory Brachytherapy Intravascular written by John G. Webster and has been published by Wiley-Interscience this book supported file pdf, txt, epub, kindle and other format this book has been release on 2006-04-07 with Medical categories.
The articles in The Encyclopedia of Medical Devices and Instrumentation focus on what is currently useful or is likely to be useful in future medicine. They answer the question, What are the branches of medicine and how does technology assist each of them? Articles focus on the practice of medicine that is assisted by devices, rather than including, for example, the use of drugs to treat disease. The title is the only resource on the market dealing with the subject in encyclopedic detail. * Accessible to practitioners with a broad range of backgrounds from students to researchers and physicians * Articles cover the latest developments such as nanotechnology, fiber optics, and signal processing
Microfluidics Enabled Interfacial Capacitive Sensors For Biomedical Applications
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Author : Baoqing Nie
language : en
Publisher:
Release Date : 2015
Microfluidics Enabled Interfacial Capacitive Sensors For Biomedical Applications written by Baoqing Nie and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2015 with categories.
Pressure is a vital indicator in various physiological systems. Therefore, extracting the pressure information (e.g., intraocular pressure, intracranial pressure) becomes important in monitoring these physiological systems. A variety of pressure sensors/transducers have been investigated and most of them rely on resistive, piezoelectric, or capacitive sensing mechanism. However, several major challenges preventing their adoption in advanced medical devices (e.g., surgical instruments) are the needs for high sensitivity, accuracy, fast mechanical response, and high flexibility. In this dissertation, we have introduced a novel microfluidics-enabled interfacial capacitive sensor, referred to as MICS, with ultrahigh pressure sensitivity and resolution, fast mechanical response, and skin-like flexibility at a low-cost for various biomedical applications. Utilizing a high-capacitance electrical double layer (EDL) at the elastic electrode-electrolyte interface, the MICS with a simple device architecture achieves an ultra-large capacitance and an ultrahigh device sensitivity, i.e. more than 1,000 times larger than the traditional solid-state capacitive sensors. Importantly, the influences of the design parameters on the device sensitivity have been thoroughly investigated, as the desired device sensitivity can vary considerably for different applications. In addition, utilizing the low-viscosity sensing liquids on a hydrophobic-modified surface, we have been able to achieve high-frequency responses to external stimuli (up to 1kHz). Moreover, benefiting from the chemical and thermal stability of the sensing liquids, we have largely removed the concerns of environmental sensitivities (e.g., evaporation) and achieved stable sensing units. Furthermore, the simple device architecture -- the entire device consists of only two flexible micropatterned electrode layers and one spacing layer, allows us to massively produce the MICS at low-cost yet high reliability. Besides the investigations on the device performances, we have also explored a multi-functional MICS. Inspired by the physiological tactile sensation, we have successfully devised the MICS to detect the normal and shear pressure as well as to map surface topology at an ultrafine spatial resolution (greater than that of human skin) within a flexible and transparent package. In addition, the MICS has been developed into a wireless pressure sensor, allowing it to be integrated in implantable and remote sensing devices. As demonstrations, we have applied the wireless MICS, encapsulated in a biocompatible silicone rubber, to monitor the intraocular pressure of human eyes. In Vitro tests have been performed, in which the sensor achieves a good sensitivity and accuracy within the target pressure range. In addition, we have devised the MICS in a miniaturized package (0.20mm x 0.16mm x 1.50mm) with an ultrahigh capacitive output. Given its high sensitivity and miniaturized design, this MICS can be readily integrated into existing medical devices (e.g., guide wires) for an invasive physiological pressure monitoring. In conclusion, a novel interfacial capacitive sensing principle is presented in this dissertation, and we believe this novel sensing approach will offer a highly transformative solution to various medical applications (e.g., diagnoses of glaucoma and coronary artery disease) in the near future.
Biomedical Sensors
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Author : Deric P. Jones
language : en
Publisher: Momentum Press
Release Date : 2010
Biomedical Sensors written by Deric P. Jones and has been published by Momentum Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2010 with Medical categories.
Sensors are the eyes, ears, and more, of the modern engineered product or system- including the living human organism. This authoritative reference work, part of Momentum Press's new Sensors Technology series, edited by noted sensors expert, Dr. Joe Watson, will offer a complete review of all sensors and their associated instrumentation systems now commonly used in modern medicine. Readers will find invaluable data and guidance on a wide variety of sensors used in biomedical applications, from fluid flow sensors, to pressure sensors, to chemical analysis sensors. New developments in biomaterials- based sensors that mimic natural bio-systems will be covered as well. Also featured will be ample references throughout, along with a useful Glossary and symbols list, as well as convenient conversion tables.
Interfacing Bioelectronics And Biomedical Sensing
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Author : Hung Cao
language : en
Publisher: Springer Nature
Release Date : 2020-02-13
Interfacing Bioelectronics And Biomedical Sensing written by Hung Cao and has been published by Springer Nature this book supported file pdf, txt, epub, kindle and other format this book has been release on 2020-02-13 with Technology & Engineering categories.
This book addresses the fundamental challenges underlying bioelectronics and tissue interface for clinical investigation. Appropriate for biomedical engineers and researchers, the authors cover topics ranging from retinal implants to restore vision, implantable circuits for neural implants, and intravascular electrochemical impedance to detect unstable plaques. In addition to these chapters, the authors also document the approaches and issues of multi-scale physiological assessment and monitoring in both humans and animal models for health monitoring and biological investigations; novel biomaterials such as conductive and biodegradable polymers to be used in biomedical devices; and the optimization of wireless power transfer via inductive coupling for batteryless and wireless implantable medical devices. In addition to engineers and researchers, this book is also an ideal supplementary or reference book for a number of courses in biomedical engineering programs, such as bioinstrumentation, MEMS/BioMEMS, bioelectronics and sensors, and more. Analyzes and discusses the electrode-tissue interfaces for optimization of biomedical devices. Introduces novel biomaterials to be used in next-generation biomedical devices. Discusses high-frequency transducers for biomedical applications.
Sensors In Biomedical Applications
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Author : Gabor Harsanyi
language : en
Publisher: CRC Press
Release Date : 2000-05-01
Sensors In Biomedical Applications written by Gabor Harsanyi and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2000-05-01 with Medical categories.
While most books contain some information on related sensors topics, they are limited in their scope on biomedical sensors. Sensors in Biomedical Applications: Fundamentals, Design, Technology and Applications is the first systematized book to concentrate on all available and potential sensor devices of biomedical applications! Sensors in Biomedical Applications presents information on sensor types in a comprehensive and easy to understand format. The first four chapters concentrate on the basics, lending an understanding to operation and design principles of sensor elements. Introduced are sections on: basic terms, sensor technologies, sensor structure and sensing effects. The next three chapters describe application possibilities: physical sensors, sensors for measuring chemical qualities and biosensors. Finally, a chapter covers biocompatability, in addition to an appendix and glossary. Sensors in Biomedical Applications is the definitive reference book for a broad audience. All physicists, chemists and biologists interested in the chemical basis and effects of sensors will find this work invaluable. Biomedical engineers and sensor specialists will find the text useful in its pointed analysis of special design, processing and application problems. Physicians practicing with diagnostic tools will want to see the possibilities and limits of biomedical sensors. Finally, students of all of the above areas who wish to learn more about the basics of biomedical sensors need to have this book.