May 9, 2021

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Additive Manufacturing in Healthcare

Additive Manufacturing in Healthcare
Author : Godfrey C. Onwubolu
Publisher : Academic Press
Release Date : 2020-11-01
Category : Technology & Engineering
Total pages :425
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Additive Manufacturing in Healthcare: A Practical Perspective offers practitioners the "practical know-how" to enable the use of different technologies involved in additively joining materials to form tangible parts based on computer-aided design (CAD) models for both healthcare and biomedical engineering applications. Additive Manufacturing is a completely disruptive technology that is growing exponentially in medicine and dentistry. Written for practitioners in the healthcare sector who are not familiar with this new technology, this book provides an easy-to-understand workflow that covers, for example, how to move from segmentation to 3D reconstruction and even 3D printed parts of human anatomy. Offers readers an in-depth look into the practical workflows that show "how" additive manufacturing is applied to satisfy end-use requirements Includes more than 300 step-by-step figures across healthcare and biomedical engineering Explores how additive manufacturing can be applied across the healthcare sector (medicine, digital dentistry, orthotics and prosthetics), also exploring key barriers to implementation

Additive Manufacturing Implementation in Healthcare Systems

Additive Manufacturing Implementation in Healthcare Systems
Author : K. Chaldoupis
Publisher : Unknown
Release Date : 2018
Category :
Total pages :129
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A Focus on 3D Printing for Healthcare Applications

A Focus on 3D Printing for Healthcare Applications
Author : Emerald Group Publishing Limited
Publisher : Emerald Group Publishing
Release Date : 2015-10-28
Category : Business & Economics
Total pages :240
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A Focus on 3D Printing for Healthcare Applications is an indispensable collection of articles for anyone interested in additive manufacturing and prosthetics. 3D printing has huge potential to deliver tailored healthcare solutions. Find out some of the reasons why by reading this collection.

Additive Manufacturing

Additive Manufacturing
Author : T.S. Srivatsan,T.S. Sudarshan
Publisher : CRC Press
Release Date : 2015-09-25
Category : Technology & Engineering
Total pages :444
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Get Ready for the Future of Additive Manufacturing Additive Manufacturing: Innovations, Advances, and Applications explores the emerging field of additive manufacturing (AM)—the use of 3D printing to make prototype parts on demand. Often referred to as the third industrial revolution, AM offers many advantages over traditional manufacturing. This process enables users to quickly build three-dimensional objects from the bottom-up, adding material one cross-sectional layer at a time directly from a computer model. This book provides a clear overview of specific technologies related to AM. It covers existing and emerging techniques in AM in use for a wide spectrum of manufacturing applications, and highlights the advantages of each technique with specific references to technological applications. Introduces Valuable Processes for Making Prototype Parts among Manufacturers of Many Types The book outlines many of the processes developed using various materials ranging from metals to plastics, and composites to human tissue. It presents recent innovations and potential viable applications that include: near-net shape capabilities, superior design, geometric flexibility, innovations in fabrication using multiple materials, and reduced tooling and fixturing. It also introduces several illustrations and case studies that focus on the present and far-reaching applications, developments, and future prospects of AM technologies. Written by renowned experts in their fields, this book: Covers the reactive inkjet printing of nylon materials relevant to AM Discusses the AM of metals using the techniques of free space deposition and selective laser melting Provides a comparison between AM materials and human tissues Addresses the use of AM for medical devices and drug and cell delivery Focuses on the relevance of AM to rare earth magnets and more Additive Manufacturing: Innovations, Advances, and Applications emphasizes the use of AM commensurate with advances in technical applications, and provides a solid background on the fundamentals and principles of this rapidly developing field.

3D Printing and Additive Manufacturing

3D Printing and Additive Manufacturing
Author : Chee Kai Chua,Kah Fai Leong
Publisher : World Scientific Publishing Company
Release Date : 2014-08-06
Category : Technology & Engineering
Total pages :548
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Latest Edition: 3D Printing and Additive Manufacturing: Principles and Applications. Fifth Edition of Rapid Prototyping. 3D Printing and Additive Manufacturing (AM) has revolutionised how prototypes are made and small batch manufacturing carried out. With additive manufacturing, the strategies used to produce a part change a number of important considerations and limitations previously faced by tool designers and engineers. This textbook is the fourth edition of Rapid Prototyping: Principles and Applications. It covers the key AM processes, the available models and specifications, and their principles, materials, advantages and disadvantages. Examples of application areas in design, planning, manufacturing, biomedical engineering, entertainment, weaponry, art and architecture are also given. The book includes several related problems for the reader to test his or her understanding of the topics. This edition comes with a companion media pack that presents animated illustrations of the working principles of today's key AM processes.

Advances in Manufacturing and Industrial Engineering

Advances in Manufacturing and Industrial Engineering
Author : Ranganath M. Singari,Kaliyan Mathiyazhagan,Harish Kumar
Publisher : Springer Nature
Release Date : 2020
Category : Automation
Total pages :1211
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This book presents selected peer reviewed papers from the International Conference on Advanced Production and Industrial Engineering (ICAPIE 2019). It covers a wide range of topics and latest research in mechanical systems engineering, materials engineering, micro-machining, renewable energy, industrial and production engineering, and additive manufacturing. Given the range of topics discussed, this book will be useful for students and researchers primarily working in mechanical and industrial engineering, and energy technologies.

Design for Health

Design for Health
Author : Emmanuel Tsekleves,Rachel Cooper
Publisher : Taylor & Francis
Release Date : 2017-05-18
Category : Design
Total pages :414
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One of the most complex global challenges is improving wellbeing and developing strategies for promoting health or preventing ‘illbeing’ of the population. The role of designers in indirectly supporting the promotion of healthy lifestyles or in their contribution to illbeing has emerged. This means designers now need to consider, both morally and ethically, how they can ensure that they ‘do no harm’ and that they might deliberately decide to promote healthy lifestyles and therefore prevent ill health. Design for Health illustrates the history of the development of design for health, the various design disciplines and domains to which design has contributed. Through 26 case studies presented in this book, the authors reveal a plethora of design research methodologies and research methods employed in design for health. The editors also present, following a thematic analysis of the book chapters, seven challenges and seven areas of opportunity that designers are called upon to address within the context of healthcare. Furthermore, five emergent trends in design in healthcare are presented and discussed. This book will be of interest to students of design as well as designers and those working to improve the quality of healthcare.

Polymer-based Additive Manufacturing

Polymer-based Additive Manufacturing
Author : Jonathan E. Seppala,Anthony P. Kotula,Chad R. Snyder
Publisher : Unknown
Release Date : 2019
Category : Polymers
Total pages :129
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"Additive manufacturing (AM) is a potentially disruptive technology, revolutionizing not only traditional industries but generating entirely new ones through rapid innovation, the democratization of manufacturing, and unprecedented freedom of design. Furthermore, the development of AM technologies has practical implications for economic growth, healthcare, national security, space exploration, and sustainability. For military and space agencies, AM offers the possibility to transform the traditional supply chain system through manufacturing at-point-of-demand, recycling, and indigenous sourcing of raw materials. Similarly, these concepts are being leveraged by remote communities across the globe through efforts such as Fab Labs, which provide low-cost access to manufacturing technologies. AM is transforming healthcare in unexpected ways: doctors and patients have access to high-quality physical 3D models generated directly from computerized tomography (CT) scans. These surgical guides have proved invaluable in surgical preparation and patient consent. In the lab, researchers are developing medical devices or implants which mimic the patient's physiology, are pre-loaded with therapeutics, and are replaced with the patient's cells through natural tissue repair pathways. Pushing the limits of resolution, multi-photon technologies, which allow subdiffraction-limited resolution, are revolutionizing the development of micro-optical components. Unfortunately, adoption of AM technologies by industry has been slow; and while there are numerous success stories and commercial adoption is steadily increasing, AM is hampered by weak parts, incomplete certification methods, and empirical materials development. Regulatory and standards bodies are working to update or develop new standards and policies to deal with the unique material and production issues posed by AM. Many of the challenges facing the industry stem from our limited understanding of structure-process-performance relationships. These challenges fall into many categories and require a broad range of skills to address. For the researcher, AM processes offer unique challenges in materials development, metrology, and modeling, as well as opportunities to combine all three. What makes a polymer printable? What process parameters are important? How should parts be tested? These are all active areas of investigation. This book was inspired by the 2017 ACS Symposium "Additive Manufacturing of Structures and Functional Devices: Materials, Methods, Models, and Testing" and is supplemented by additional experts in the polymer AM field. The chapters discuss the technologies, measurement challenges, manufacturing opportunities, and fabrication potentials. We begin with an introduction to polymer additive manufacturing, identifying the measurement needs and technical challenges facing the industry. A chapter reviewing polymer powder bed fusion follows, providing a complete discussion on methods, materials, and applications. The bulk of the book covers thermoplastic material extrusion, with chapters discussing recycling-based feedstocks, composites materials, and multi-physics modeling linking experimentation and theory. Moving from thermoplastics to conductive inks, a chapter on in situ monitoring and control of direct-ink-write provides a clear example of how theory and modern machine vision can be used to create a practical and responsive control system. The last chapter provides a state-of-the-art review of multi-photon printing, discussing methods, materials, and the stunning capabilities of the technique"--

High-resolution 3D Direct-write Prototyping for Healthcare Applications

High-resolution 3D Direct-write Prototyping for Healthcare Applications
Author : Saja Aabith
Publisher : Unknown
Release Date : 2020
Category :
Total pages :173
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The healthcare sector has much to benefit from the vast array of novelties erupting from the manufacturing world. 3D printing (additive manufacturing) is amongst the most promising recent inventions with much research concentrated around the various approaches of 3D printing and applying this effectively in the health sector. Amongst these methods, the direct-write assembly approach is a promising candidate for rapid prototyping and manufacturing of miniaturised medical devices/sensors and in particular, miniaturised flexible capacitive pressure sensors. Microstructuring the dielectric medium of capacitive pressure sensors enhances the sensitivity of the capacitive pressure sensor. The structuring has been predominantly achieved with photolithography and similar subtractive approaches. In this project high-resolution 3D direct write printing was used to fabricate structured dielectric mediums for capacitive pressure sensors. This involved the development and rheological characterisation of printability-tuned water soluble polyvinyl pyrrolidone (PVP) based inks (10%-30% polymer content) for stable high-resolution 3D printing. These inks were used to print water soluble micromoulds that were filled and cured with otherwise difficult to structure low G" materials like PDMS. Our approach essentially decouples ink synthesis from printability at the micrometre scale. The developed micro moulding approach was employed for printing pyramidal micro moulds, that were used as templates for fabricating pyramid structured dielectric mediums for capacitive pressure sensing. The power of the approach was used to alter the microstructures and reap enhanced pressure sensing characteristics for effective miniaturised capacitive pressure sensors. A pressure sensing ring "†that could be worn by doctors and surgeons "†was prototyped with our approach and employed successfully to monitor in real-time the radial pulse signal of a 29 year old male volunteer. The print resolution of the inks was enhanced by formulating and rheologically characterising a PVP/PVDF polymer blend ink that would wet the printing nozzle less due to the hydrophobicity of the PVDF.

Humanizing Healthcare: Hardwire Humanity into the Future of Health

Humanizing Healthcare: Hardwire Humanity into the Future of Health
Author : Summer Knight
Publisher : McGraw Hill Professional
Release Date : 2021-04-06
Category : Business & Economics
Total pages :288
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From a top healthcare futurist, frontline innovator, and Deloitte consultant comes a bold new vision for Humanizing Healthcare—hardwiring humanity at every point of care—that is good for people and good for business. Our nation’s healthcare and life science industry has changed dramatically over the past few decades—and not always for the better. In addition to rising costs and access challenges, the current system has caused needless suffering for patients and clinicians alike: physically, emotionally, financially, and socially. There have been numerous efforts to overhaul the system, but nothing has yet cured healthcare of its illnesses. In Humanizing Healthcare, paramedic-turned-physician executive and Deloitte Managing Director Summer Knight draws on her years of experience on the frontlines of healthcare to offer a powerful road map for real reform. Her refreshingly human approach to transforming our healthcare system provides practical strategies to: Identify core problems in the current system—and find the best workable solutions. Combine healthcare with social services—and build stronger networks of support. Use digital technology and virtual visits to provide expert care at lower costs. Empower healthcare consumers to make smarter choices in their treatment and purchasing options. Form therapeutic alliances between the clinical team (physicians and staff) and the home team (family and friends). Build a solid foundation for ongoing improvements that are truly sustainable, affordable, and humane. This is a clear, compassionate guide to how the industry can transform to embody a more human perspective and use it as a collective north star that will positively impact all stakeholders—consumers, providers, caregivers, staff, executives, shareholders, and the government—alike. Most importantly, this book will open your eyes to what’s possible when you create high-quality, deeply felt alliances that deliver consumer-driven care with value to all. Humanizing Healthcare is the future of health.

Feed Additive Compendium

Feed Additive Compendium
Author : Anonim
Publisher : Unknown
Release Date : 2000
Category : Drugs
Total pages :129
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Advances in Manufacturing, Production Management and Process Control

Advances in Manufacturing, Production Management and Process Control
Author : Waldemar Karwowski,Stefan Trzcielinski,Beata Mrugalska,Massimo Di Nicolantonio,Emilio Rossi
Publisher : Springer
Release Date : 2018-06-26
Category : Technology & Engineering
Total pages :561
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This book discusses the latest advances in manufacturing and process control, with a special emphasis on digital manufacturing and intelligent technologies for manufacturing and industrial processes control. The human aspect of the developed technologies and products, their interaction with the users, as well as sustainability issues, are covered in detail. Development of new products using 3D printers, rapid prototyping systems, remote fabrication, and other advanced techniques, is described in detail, highlighting the state-of-the-art and current challenges. Other key topics include digital modeling systems and additive manufacturing, together with their applications in a number of fields, e.g in bioengineering/biomedicine, in the aerospace, maritime and military fields or for archeological and historical purposes, such as preserving structures, but not limited to this. The book is based on three AHFE 2018 affiliated conferences i.e. the AHFE 2018 International Conference on Advanced Production Management and Process Control, the AHFE 2018 International Conference on Human Aspects of Advanced Manufacturing, and the AHFE 2018 International Conference on Additive Manufacturing, Modeling Systems and 3D Prototyping, which were held on July 21-25, 2018, in Orlando, Florida, USA.

CORDIS Focus

CORDIS Focus
Author : Anonim
Publisher : Unknown
Release Date : 2007
Category : Research
Total pages :129
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How "Fabbing" Will Change Different Industries Until 2030. The Future of 3D Printing in Aerospace, Retail and Healthcare

How
Author : Leon Thomsen
Publisher : GRIN Verlag
Release Date : 2015-08-07
Category : Business & Economics
Total pages :55
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Bachelor Thesis from the year 2015 in the subject Economics - Innovation economics, grade: 1.5, EBS European Business School gGmbH (Institute for Innovation and Transformation), language: English, abstract: The aim of this paper is to investigate the impact of fabbing on various industries to reveal how these industries could potentially be transformed in the next 15 years. First, the subsequent chapters two and three cover the theoretical fundamentals of this paper. In doing so, chapter two addresses additive manufacturing, which focuses on its definition and procedure as well as fabbing, which is covered to the most detailed extent as it is the additive manufacturing's main field of application. As additive manufacturing is often classified a disruptive technology, chapter three discusses Christensen's theory as well as recommendations on how to deal with disruptive innovations. Based on these fundamentals, chapter four starts with the design of a scorecard, which matches various industries with a score from one to five to each of the most relevant factors that have to be considered when evaluating the impact of fabbing on the respective industries. Afterwards, the three industries with the highest overall score are selected for further investigation. This investigation addresses the impact of fabbing on that particular industry and will be based on theknowledge, valuation and expectations of experts. Furthermore, an exemplary case study of one enterprise from each industry is conducted to showcase actual changes within a company. The paper then concludes with a summary and an outlook on necessary further research.

Manufacturing Engineering and Process VII

Manufacturing Engineering and Process VII
Author : Mario Kong
Publisher : Trans Tech Publications Ltd
Release Date : 2018-07-27
Category : Technology & Engineering
Total pages :144
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The Conference on Manufacturing Engineering and Process is an annual international event to ensure interaction between scientists, engineers and also the dissemination of research results related to the materials science and modern materials synthesis and processing technologies. The 7th International Conference on Manufacturing Engineering and Process (ICMEP 2018) was held on February 5-7, 2018 in Barcelona, Spain.