Human Factors Engineering Guidelines and Preferred Practices for the Design of Medical Devices

Human Factors Engineering Guidelines and Preferred Practices for the Design of Medical Devices
Author: Association for the Advancement of Medical Instrumentation. AAMI.
Publisher:
Total Pages: 35
Release: 1988
Genre:
ISBN:

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This recommended practice deals with the controls, displays, consoles, size, weight, and general design of medical devices. The purpose of this recommended practice is to provide ergonomic information and human factors engineering guidelines so that optimum user and patient safety, system safety and performance, and operator effectiveness will be reflected in medical device design.

Handbook of Human Factors in Medical Device Design

Handbook of Human Factors in Medical Device Design
Author: Matthew Bret Weinger
Publisher: CRC Press
Total Pages: 822
Release: 2010-12-13
Genre: Technology & Engineering
ISBN: 1420063510

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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

Humanizing Healthcare – Human Factors for Medical Device Design

Humanizing Healthcare – Human Factors for Medical Device Design
Author: Russell J. Branaghan
Publisher: Springer Nature
Total Pages: 395
Release: 2021-02-21
Genre: Technology & Engineering
ISBN: 3030644332

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This book introduces human factors engineering (HFE) principles, guidelines, and design methods for medical device design. It starts with an overview of physical, perceptual, and cognitive abilities and limitations, and their implications for design. This analysis produces a set of human factors principles that can be applied across many design challenges, which are then applied to guidelines for designing input controls, visual displays, auditory displays (alerts, alarms, warnings), and human-computer interaction. Specific challenges and solutions for various medical device domains, such as robotic surgery, laparoscopic surgery, artificial organs, wearables, continuous glucose monitors and insulin pumps, and reprocessing, are discussed. Human factors research and design methods are provided and integrated into a human factors design lifecycle, and a discussion of regulatory requirements and procedures is provided, including guidance on what human factors activities should be conducted when and how they should be documented. This hands-on professional reference is an essential introduction and resource for students and practitioners in HFE, biomedical engineering, industrial design, graphic design, user-experience design, quality engineering, product management, and regulatory affairs. Teaches readers to design medical devices that are safer, more effective, and less error prone; Explains the role and responsibilities of regulatory agencies in medical device design; Introduces analysis and research methods such as UFMEA, task analysis, heuristic evaluation, and usability testing.

Designing for Safe Use

Designing for Safe Use
Author: Michael Wiklund
Publisher: CRC Press
Total Pages: 588
Release: 2019-03-11
Genre: Business & Economics
ISBN: 1351579150

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How do you prevent a critical care nurse from accidentally delivering a morphine overdose to an ill patient? Or ensure that people don't insert their arm into a hydraulic mulcher? And what about enabling trapped airline passengers to escape safely in an emergency? Product designers and engineers face myriad such questions every day. Failure to answer them correctly can result in product designs that lead to injury or even death due to use error. Historically, designers and engineers have searched for answers by sifting through complicated safety standards or obscure industry guidance documents. Designing for Safe Use is the first comprehensive source of safety-focused design principles for product developers working in any industry. Inside you’ll find 100 principles that help ensure safe interactions with products as varied as baby strollers, stepladders, chainsaws, automobiles, apps, medication packaging, and even airliners. You’ll discover how protective features such as blade guards, roll bars, confirmation screens, antimicrobial coatings, and functional groupings can protect against a wide range of dangerous hazards, including sharp edges that can lacerate, top-heavy items that can roll over and crush, fumes that can poison, and small parts that can pose a choking hazard. Special book features include: Concise, illustrated descriptions of design principles Sample product designs that illustrate the book’s guidelines and exemplify best practices Literature references for readers interested in learning more about specific hazards and protective measures Statistics on the number of injuries that have arisen in the past due to causes that might be eliminated by applying the principles in the book Despite its serious subject matter, the book’s friendly tone, surprising anecdotes, bold visuals, and occasional attempts at dry humor will keep you interested in the art and science of making products safer. Whether you read the book cover-to-cover or jump around, the book’s relatable and practical approach will help you learn a lot about making products safe. Designing for Safe Use is a primer that will spark in readers a strong appreciation for the need to design safety into products. This reference is for designers, engineers, and students who seek a broad knowledge of safe design solutions. .

Applied Human Factors in Medical Device Design

Applied Human Factors in Medical Device Design
Author: Mary Beth Privitera
Publisher: Academic Press
Total Pages: 371
Release: 2019-06-15
Genre: Science
ISBN: 0128161647

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Applied Human Factors in Medical Device Design describes the contents of a human factors toolbox with in-depth descriptions of both empirical and analytical methodologies. The book begins with an overview of the design control process, integrating human factors as directed by AAMI TIR 59 and experienced practice. It then explains each method, describing why each method is important, its potential impact, when it's ideal to use, and related challenges. Also discussed are other barriers, such as communication breakdowns between users and design teams. This book is an excellent reference for professionals working in human factors, design, engineering, marketing and regulation. Focuses on meeting agency requirements as it pertains to the application of human factors in the medical device development process in both the US and the European Union (EU) Explains technology development and the application of human factors throughout the development process Covers FDA and MHRA regulations Includes case examples with each method

Medical Device Use Error

Medical Device Use Error
Author: Michael Wiklund
Publisher: CRC Press
Total Pages: 262
Release: 2016-01-06
Genre: Medical
ISBN: 1498705804

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Medical Device Use Error: Root Cause Analysis offers practical guidance on how to methodically discover and explain the root cause of a use error-a mistake-that occurs when someone uses a medical device. Covering medical devices used in the home and those used in clinical environments, the book presents informative case studies about the use errors

Human Factors Engineering--design of Medical Devices

Human Factors Engineering--design of Medical Devices
Author: Association for the Advancement of Medical Instrumentation
Publisher:
Total Pages: 445
Release: 2010
Genre: Biomedical engineering
ISBN: 9781570203640

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Health Care Comes Home

Health Care Comes Home
Author: National Research Council
Publisher: National Academies Press
Total Pages: 202
Release: 2011-06-22
Genre: Medical
ISBN: 0309212405

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In the United States, health care devices, technologies, and practices are rapidly moving into the home. The factors driving this migration include the costs of health care, the growing numbers of older adults, the increasing prevalence of chronic conditions and diseases and improved survival rates for people with those conditions and diseases, and a wide range of technological innovations. The health care that results varies considerably in its safety, effectiveness, and efficiency, as well as in its quality and cost. Health Care Comes Home reviews the state of current knowledge and practice about many aspects of health care in residential settings and explores the short- and long-term effects of emerging trends and technologies. By evaluating existing systems, the book identifies design problems and imbalances between technological system demands and the capabilities of users. Health Care Comes Home recommends critical steps to improve health care in the home. The book's recommendations cover the regulation of health care technologies, proper training and preparation for people who provide in-home care, and how existing housing can be modified and new accessible housing can be better designed for residential health care. The book also identifies knowledge gaps in the field and how these can be addressed through research and development initiatives. Health Care Comes Home lays the foundation for the integration of human health factors with the design and implementation of home health care devices, technologies, and practices. The book describes ways in which the Agency for Healthcare Research and Quality (AHRQ), the U.S. Food and Drug Administration (FDA), and federal housing agencies can collaborate to improve the quality of health care at home. It is also a valuable resource for residential health care providers and caregivers.