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First published in 2001: This handbook has been written to give
those professionals working in the development and use of medical
devices practical knowledge about biomedical technology,
regulations, and their relationship to quality health care.
"Acquaints developers of medical devices with the basic concepts
and major issues of medical quality assurance and regulatory
documents, describes the requirements listed in these documents,
and provides strategies for compliance with these requirements."
As medical devices become even more intricate, concerns about
efficacy, safety, and reliability continue to be raised. Users and
patients both want the device to operate as specified, perform in a
safe manner, and continue to perform over a long period of time
without failure. Following in the footsteps of the bestselling
second edition, Reliable Design of Medical Devices, Third Edition
shows you how to improve reliability in the design of advanced
medical devices. Reliability engineering is an integral part of the
product development process and of problem-solving activities
related to manufacturing and field failures. Mirroring the typical
product development process, the book is organized into seven
parts. After an introduction to the basics of reliability
engineering and failures, it takes you through the concept,
feasibility, design, verification and validation, design transfer
and manufacturing, and field activity phases. Topics covered
include Six Sigma for design, human factors, safety and risk
analysis, and new techniques such as accelerated life testing (ALT)
and highly accelerated life testing (HALT). What's New in This
Edition Updates throughout, reflecting changes in the field An
updated software development process Updated hardware test
procedures A new layout that follows the product development
process A list of deliverables needed at the end of each
development phase Incorporating reliability engineering as a
fundamental design philosophy, this book shares valuable insight
from the author's more than 35 years of experience. A practical
guide, it helps you develop a more effective reliability
engineering program-contributing to increased profitability, more
satisfied customers, and less risk of liability.
As medical devices become even more intricate, concerns about
efficacy, safety, and reliability continue to be raised. Users and
patients both want the device to operate as specified, perform in a
safe manner, and continue to perform over a long period of time
without failure. Following in the footsteps of the bestselling
second edition, Reliable Design of Medical Devices, Third Edition
shows you how to improve reliability in the design of advanced
medical devices. Reliability engineering is an integral part of the
product development process and of problem-solving activities
related to manufacturing and field failures. Mirroring the typical
product development process, the book is organized into seven
parts. After an introduction to the basics of reliability
engineering and failures, it takes you through the concept,
feasibility, design, verification and validation, design transfer
and manufacturing, and field activity phases. Topics covered
include Six Sigma for design, human factors, safety and risk
analysis, and new techniques such as accelerated life testing (ALT)
and highly accelerated life testing (HALT). What's New in This
Edition Updates throughout, reflecting changes in the field An
updated software development process Updated hardware test
procedures A new layout that follows the product development
process A list of deliverables needed at the end of each
development phase Incorporating reliability engineering as a
fundamental design philosophy, this book shares valuable insight
from the author's more than 35 years of experience. A practical
guide, it helps you develop a more effective reliability
engineering program-contributing to increased profitability, more
satisfied customers, and less risk of liability.
First published in 2001: This handbook has been written to give
those professionals working in the development and use of medical
devices practical knowledge about biomedical technology,
regulations, and their relationship to quality health care.
This essential reference acquaints developers of medical devices
with the basic concepts and major issues of medical quality
assurance and regulatory documents, describes the requirements
listed in these documents, and provides strategies for compliance
with these requirements. Medical Device Quality Assurance and
Regulatory Compliance summarizes regulation activities of the FDA,
the European Economic Community, and the Global Harmonization Task
Force shows how to choose a standard from the ISO 9000 and ISO
14000 series teaches how to prepare your company for auditing, how
to choose a notified body, and how to survive the audit reviews
standards dealing specifically with medical devices such as EN
46000, ISO 13485, and ISO 13488 discusses the requirements for
product submittals prior to product introduction addresses current
issues such as third party approvals and more Including numerous
key references, tables, and drawings, Medical Device Quality
Assurance and Regulatory Compliance is ideal for biomedical,
quality assurance, reliability, software, product design,
manufacturing, research and development, and industrial engineers;
project managers; biomedical technicians; medical device purchasing
personnel; and upper-level undergraduate and graduate students in
these disciplines.
This fourth edition is a substantial revision of a highly regarded
text, intended for senior design capstone courses within
departments of biomedical engineering, bioengineering, biological
engineering and medical engineering, worldwide. Each chapter has
been thoroughly updated and revised to reflect the latest
developments. New material has been added on entrepreneurship,
bioengineering design, clinical trials and CRISPR. Based upon
feedback from prior users and reviews, additional and new examples
and applications, such as 3D printing have been added to the text.
Additional clinical applications were added to enhance the overall
relevance of the material presented. Relevant FDA regulations and
how they impact the designer's work have been updated. Features
Provides updated material as needed to each chapter Incorporates
new examples and applications within each chapter Discusses new
material related to entrepreneurship, clinical trials and CRISPR
Relates critical new information pertaining to FDA regulations.
Presents new material on "discovery" of projects "worth pursuing"
and design for health care for low-resource environments Presents
multiple case examples of entrepreneurship in this field Addresses
multiple safety and ethical concerns for the design of medical
devices and processes
Compiling an abundant catalog of the essential criteria and methods
for the design of medical devices, this comprehensive reference
supplies insights into a rapidly evolving field-spanning practical
knowledge, field tracking, valuable timesaving techniques, and the
latest innovations. Reviews current regulatory and standards
issues, including FDA regulations, types of 510 (k), the ISO 9000
series, and medical device directives Foreseeing a variety of
concerns and obstacles, the Handbook of Medical Device Design
identifies how to determine and document customer needs and device
requirements establishes reliability and quality metrics for the
duration of the product development cycle compares international
regulations and standards, in Europe, Canada, Japan, and Australia
illustrates electrical, mechanical, hardware, software, and
industrial design considerations discusses biocompatibility,
safety/risk analysis, third-party certification, technical
documentation, translations, and life-cycle costs of implantable
equipment thoroughly examines manufacturing processes such as
quality system regulation and preparation for the quality system
audit and more Includes useful appendices of tables and a glossary
Written by experienced practitioners and authorities in the field,
the Handbook of Medical Device Design is a necessary and worthwhile
reference and guidebook for biomedical, quality assurance,
reliability, software, product design, manufacturing, research and
development, and industrial engineers; project managers; biomedical
technicians, medical device purchasing personnel; and upper-level
undergraduate and graduate students in these disciplines.
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