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Design of Microcomputer-based Medical Instrumentation

Design of Microcomputer-based Medical Instrumentation PDF Author: John G. Webster
Publisher:
ISBN:
Category : Biomedical engineering
Languages : en
Pages : 752

Book Description


Design of Microcomputer-based Medical Instrumentation

Design of Microcomputer-based Medical Instrumentation PDF Author: John G. Webster
Publisher:
ISBN:
Category : Biomedical engineering
Languages : en
Pages : 752

Book Description


Design of Microcomputer-based Medical Instrumentation

Design of Microcomputer-based Medical Instrumentation PDF Author: Willis J. Tompkins
Publisher: Prentice Hall
ISBN:
Category : Computers
Languages : en
Pages : 518

Book Description


Microcomputer Based Medical Instrumentation Design

Microcomputer Based Medical Instrumentation Design PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


The Biomedical Engineering Handbook 1

The Biomedical Engineering Handbook 1 PDF Author: Joseph D. Bronzino
Publisher: Springer Science & Business Media
ISBN: 9783540663515
Category : Technology & Engineering
Languages : en
Pages : 1644

Book Description


The use of microprocessor-based, "intelligent" machines in patient care

The use of microprocessor-based, Author: National Institutes of Health (U.S.). Biomedical Engineering and Instrumentation Branch
Publisher:
ISBN:
Category : Electronic data processing
Languages : en
Pages : 136

Book Description


The Use of Microprocessor-based, "intelligent" Machines in Patient Care

The Use of Microprocessor-based, Author: Henry S. Eden
Publisher:
ISBN:
Category : Medical care
Languages : en
Pages : 144

Book Description


Medical Instrumentation

Medical Instrumentation PDF Author: John G. Webster
Publisher: John Wiley & Sons
ISBN: 0471676004
Category : Science
Languages : en
Pages : 736

Book Description
This book provides biomedical engineers with the premiere reference on medical instrumentation as well as a comprehensive overview of the basic concepts. The revised edition features new material on infant apnea monitors, impedance pneumography, the design of cardiac pacemakers, and disposable defibrillator electrodes and their standards. Each chapter includes new problems and updated reference material that cover the latest medical technologies. The chapters have also been revised with new material in medical imaging, providing biomedical engineers with the most current techniques in the field.

Medical Instrument Design and Development

Medical Instrument Design and Development PDF Author: Claudio Becchetti
Publisher: John Wiley & Sons
ISBN: 1118652460
Category : Science
Languages : en
Pages : 600

Book Description
This book explains all of the stages involved in developingmedical devices; from concept to medical approval including systemengineering, bioinstrumentation design, signal processing,electronics, software and ICT with Cloud and e-Healthdevelopment. Medical Instrument Design and Development offers a comprehensivetheoretical background with extensive use of diagrams, graphics andtables (around 400 throughout the book). The book explains how thetheory is translated into industrial medical products using amarket-sold Electrocardiograph disclosed in its design by the GammaCardio Soft manufacturer. The sequence of the chapters reflects the product developmentlifecycle. Each chapter is focused on a specific University courseand is divided into two sections: theory and implementation. Thetheory sections explain the main concepts and principles whichremain valid across technological evolutions of medicalinstrumentation. The Implementation sections show how the theory istranslated into a medical product. The Electrocardiograph(ECG or EKG) is used as an example as it is a suitable device toexplore to fully understand medical instrumentation since it issufficiently simple but encompasses all the main areas involved indeveloping medical electronic equipment. Key Features: Introduces a system-level approach to product design Covers topics such as bioinstrumentation, signal processing,information theory, electronics, software, firmware, telemedicine,e-Health and medical device certification Explains how to use theory to implement a market product (usingECG as an example) Examines the design and applications of main medicalinstruments Details the additional know-how required for productimplementation: business context, system design, projectmanagement, intellectual property rights, product life cycle,etc. Includes an accompanying website with the design of thecertified ECG product (ahref="http://www.gammacardiosoft.it/book"www.gammacardiosoft.it/book/a) Discloses the details of a marketed ECG Product (from GammaCardio Soft) compliant with the ANSI standard AAMI EC 11under open licenses (GNU GPL, Creative Common) This book is written for biomedical engineering courses(upper-level undergraduate and graduate students) and for engineersinterested in medical instrumentation/device design with acomprehensive and interdisciplinary system perspective.

Current Catalog

Current Catalog PDF Author: National Library of Medicine (U.S.)
Publisher:
ISBN:
Category : Medicine
Languages : en
Pages : 1712

Book Description
First multi-year cumulation covers six years: 1965-70.

Design and Development of Medical Electronic Instrumentation

Design and Development of Medical Electronic Instrumentation PDF Author: David Prutchi
Publisher: John Wiley & Sons
ISBN: 0471681830
Category : Technology & Engineering
Languages : en
Pages : 479

Book Description
Design and Development of Medical Electronic Instrumentation fills a gap in the existing medical electronic devices literature by providing background and examples of how medical instrumentation is actually designed and tested. The book includes practical examples and projects, including working schematics, ranging in difficulty from simple biopotential amplifiers to computer-controlled defibrillators. Covering every stage of the development process, the book provides complete coverage of the practical aspects of amplifying, processing, simulating and evoking biopotentials. In addition, two chapters address the issue of safety in the development of electronic medical devices, and providing valuable insider advice.