Medical Device Product Lifecycle


Book Description

This book is intended to provide an introduction to the application of a lifecycle approach to product design and development for medical devices. Medical Device Product Lifecycle management provides a framework to develop, design maintain user requirements and ensure the safety and performance of medical devices. Application of a Medical Device Product Lifecycle Management benefits the business aspects of manufacturing, fosters alignment across design and development teams and incorporates the voice of the customer, taking into account their needs and safety that is inherent in the design of products. The Medical Device Product Lifecycle (MDPL) relies upon several distinct quality management elements and processes in order to function effectively. These include; principles and establishment of a quality management system, regulatory processes, validation processes, engineering processes, change management and risk management processes. The MDPL process itself requires procedures and documentation to facilitate product realization. For the reader to gain the maximum benefit from this book, the following points should be considered. To begin with-Regulations are mandatory. Medical devices range in their application (intended use and indications), technologies, principles of operation, complexity and value. However, regulation in addition to standards need to be consulted and applied within organizations. The manufacturer has a legal responsibility in this regard and the classification and commercial strategy may require regulations such as FDA 21 CFR 820, (United States), and Medical Device Regulations EU MDR (2017/745) or Regulation 2017/746 on In-Vitro Diagnostic Devices (IVDR) (in Europe). Introduction Establishing a Medical Device Product Development Process is necessary to for medical device manufacturers to meet FDA regulations and regional regulations applicable to the products for sale. Beyond the legal stipulation, an additional purpose is to realize and deliver safe and effective medical devices that meet the intended use and user needs which provides medical solutions that enhance and preserve quality of life. To achieve safe and effective products, the guiding principles and techniques not only need to be applied in the design and development stages, but maintaining and monitoring the performance through the product lifecycle is required. It is easily to compartmentalize product performance and safety as a development and design-based activity, however, an effective medical device lifecycle process must ensure design safety and continuity until product retirement and discontinuation. The introduction of new medical device products or changes to existing medical device products necessitate design and development activities in order to plan and deliver the appropriate verifications and validations to demonstrate safety and performance of products. Device manufacturers in establishing and applying a Medical Device Product Lifecycle Process must continually ensure the process is fit-for-purpose and that is fulfils its legal and regulatory obligations (e.g. meeting the requirements of 21 CFR 820.30: Medical Devices - Quality System Regulation and ISO 13485: Medical Devices- Quality Management Systems etc.) A Medical Device Product Lifecycle process must be a comprehensive, end-to-end process that encompasses the entire life cycle of a product from project initiation through to product discontinuation and retirement of a marketed product. Making a comprehensive and detailed process intuitive and easy-to-apply should also play a role in designing and maintaining a MDPL process. Structuring the process into specific stages and the use of design review or gate reviews also provides for a format that has milestones and a stage by stage approach that makes it easier for engineers to work with.




Public Health Effectiveness of the FDA 510(k) Clearance Process


Book Description

The Food and Drug Administration (FDA) is responsible for assuring that medical devices are safe and effective before they go on the market. As part of its assessment of FDA's premarket clearance process for medical devices, the IOM held a workshop June 14-15 to discuss how to best balance patient safety and technological innovation. This document summarizes the workshop.




Trends in Development of Medical Devices


Book Description

Trends in Development of Medical Devices covers the basics of medical devices and their development, regulations and toxicological effects, risk assessment and mitigation. It also discusses the maintenance of a medical device portfolio during product lifecycle. This book provides up-to-date information and knowledge on how to understand the position and benefits of new introduced medical devices for improving healthcare. Researchers and industry professionals from the fields of medical devices, surgery, medical toxicology, pharmacy and medical devices manufacture will find this book useful. The book's editors and contributors form a global, interdisciplinary base of knowledge which they bring to this book. Provides a roadmap to medical devices development and the integration of manufacturing steps to improve workflows Helps engineers in medical devices industries to anticipate the special requirements of this field with relation to biocompatibility, sterilization methods, government regulations Presents new strategies that readers can use to take advantage of rapid prototyping technologies, such as 3D printing, to reduce imperfections in production and develop products that enable completely new treatment possibilities




Medical Device Cybersecurity for Engineers and Manufacturers


Book Description

Cybersecurity for medical devices is no longer optional. We must not allow sensationalism or headlines to drive the discussion… Nevertheless, we must proceed with urgency. In the end, this is about preventing patient harm and preserving patient trust. A comprehensive guide to medical device secure lifecycle management, this is a book for engineers, managers, and regulatory specialists. Readers gain insight into the security aspects of every phase of the product lifecycle, including concept, design, implementation, supply chain, manufacturing, postmarket surveillance, maintenance, updates, and end of life. Learn how to mitigate or completely avoid common cybersecurity vulnerabilities introduced during development and production. Grow your awareness of cybersecurity development topics ranging from high-level concepts to practical solutions and tools. Get insight into emerging regulatory and customer expectations. Uncover how to minimize schedule impacts and accelerate time-to-market while still accomplishing the main goal: reducing patient and business exposure to cybersecurity risks. Medical Device Cybersecurity for Engineers and Manufacturers is designed to help all stakeholders lead the charge to a better medical device security posture and improve the resilience of our medical device ecosystem.




Innovation and Protection


Book Description

A detailed analysis of the ethical, legal, and regulatory landscape of medical devices in the US and EU.







Medical Device Software Verification, Validation and Compliance


Book Description

HereOCOs the first book written specifically to help medical device and software engineers, QA and compliance professionals, and corporate business managers better understand and implement critical verification and validation processes for medical device software.Offering you a much broader, higher-level picture than other books in this field, this book helps you think critically about software validation -- to build confidence in your softwareOCOs safety and effectiveness. The book presents validation activities for each phase of the development lifecycle and shows: why these activities are important and add value; how to undertake them; and what outputs need to be created to document the validation process.From software embedded within medical devices, to software that performs as a medical device itself, this comprehensive book explains how properly handled validation throughout the development lifecycle can help bring medical devices to completion sooner, at higher quality, in compliance with regulations."




Medical Device Regulation


Book Description

Medical Device Regulation provides the current FDA-CDRH thinking on the regulation of medical devices. This book offers information on how devices meet criteria for being a medical device, which agencies regulate medical devices, how policies regarding regulation affect the market, rules regarding marketing, and laws and standards that govern testing. This practical, well-structured reference tool helps medical device manufacturers both in and out of the United States with premarket application and meeting complex FDA regulatory requirements. The book delivers a comprehensive overview of the field from an author with expertise in regulatory affairs and commercialization of medical devices. Offers a unique focus on the regulatory affairs industry, specifically targeted at regulatory affairs professionals and those seeking certification Puts regulations in the context of contemporary design Includes case studies and applications of regulations




Registries for Evaluating Patient Outcomes


Book Description

This User’s Guide is intended to support the design, implementation, analysis, interpretation, and quality evaluation of registries created to increase understanding of patient outcomes. For the purposes of this guide, a patient registry is an organized system that uses observational study methods to collect uniform data (clinical and other) to evaluate specified outcomes for a population defined by a particular disease, condition, or exposure, and that serves one or more predetermined scientific, clinical, or policy purposes. A registry database is a file (or files) derived from the registry. Although registries can serve many purposes, this guide focuses on registries created for one or more of the following purposes: to describe the natural history of disease, to determine clinical effectiveness or cost-effectiveness of health care products and services, to measure or monitor safety and harm, and/or to measure quality of care. Registries are classified according to how their populations are defined. For example, product registries include patients who have been exposed to biopharmaceutical products or medical devices. Health services registries consist of patients who have had a common procedure, clinical encounter, or hospitalization. Disease or condition registries are defined by patients having the same diagnosis, such as cystic fibrosis or heart failure. The User’s Guide was created by researchers affiliated with AHRQ’s Effective Health Care Program, particularly those who participated in AHRQ’s DEcIDE (Developing Evidence to Inform Decisions About Effectiveness) program. Chapters were subject to multiple internal and external independent reviews.




Medical Device Quality Management Systems


Book Description

Medical Devices Quality Management Systems: Strategy and Techniques for Improving Efficiency and Effectiveness is written for the needs of quality, compliance, and regulatory professionals in medical device companies. It includes secrets for developing an effective, yet efficient, Quality Management System (QMS) and explains how to create a vision, strategy, and tactical plans. Author Manz shares lessons on leadership, key roles and responsibilities within a medical device company, while also exploring the concepts of process ownership, individual accountability, and how to cultivate a culture of quality and compliance. This book is useful for all executive, functional leaders, and organizations in the highly regulated medical device industry. Provides practical, real-world guidance on developing an effective and efficient Quality Management System Presents a roadmap for QMS development Covers techniques to assess current state Includes discussions on tools, such as CAPA and Six Sigma that help define vision, strategy and quality plans