Cambridge University Press, 2014. — 422 p. This succinct textbook gives students the perfect introduction to the world of biomaterials, linking the fundamental properties of metals, polymers, ceramics and natural biomaterials to the unique advantages and limitations surrounding their biomedical applications. Clinical concerns such as sterilization, surface modification,...
John Wiley & Sons, Inc., Hoboken, New Jersey, 2015. — XXII, 372 p. — ISBN: 978-1-118-29997-5. Ideal as a graduate textbook, this title is aimed at helpingdesign effective biomaterials, taking into account the complexinteractions that occur at the interface when a synthetic materialis inserted into a living system. Surface reactivity,biochemistry, substrates, cleaning,...
Elsevier 2013. — 437 p. The aim to develop this book was to focus primarily on biomaterials characterisation, something that can help graduate students and biomaterials professionals to learn specifically what techniques are good for testing certain biomaterial properties based on applications and how to do it. Moreover, what properties are good to test during materials...
Chapman & Hall, 1998. — 629 p. — ISBN 0 412 603306.
Thomson Science is a division of International Thomson Publishing.
Printed in Great Britain by TJ. International Ltd, Padstow, Cornwall. 629 pages.
Progress in the development of surgical implant materials has been hindered by the lack of basic information on the nature of the tissues, organs and systems being repaired or...
Hauppauge: Nova Science Publishers, Incorporated, 2010. — 511 p. Despite the huge impact that biomaterials have had on patients' quality of life, improvements in device performance and the development of alternatives to augment available therapies are continuously being sought. This book explores the development and application of biomaterials over the past 25 years, examining...
CRC Press, Boca Raton, FL, 2008. — 701 p. — ISBN: 0849379733. Focusing on a lucrative and increasingly important area of biomedicine, the Biomaterials Fabrication and Processing Handbook brings together various biomaterials production and processing aspects, including tissue engineering scaffold materials, drug delivery systems, nanobiomaterials, and biosensors. With...
CRC Press, 2019. — 377 p. Biomaterials Science and Technology: Fundamentals and Developments presents a broad scope of the field of biomaterials science and technology, focusing on theory, advances, and applications. It reviews the fabrication and properties of different classes of biomaterials such as bioinert, bioactive, and bioresorbable, in addition to biocompatibility. It...
Springer, 2018. — 354 p. — ISBN 978-1-4939-8854-9. This text for advanced undergraduate and graduate students covers the fundamental relationships between the structure and properties of materials and biological tissues. The successful integration of material and biological properties, shape, and architecture to engineer a wide range of optimized designs for specific functions...
New York: Taylor & Francis, 2011. — 634 p. A practical road map to the key families of biomaterials and their potential applications in clinical therapeutics, Introduction to Biomaterials, Second Edition follows the entire path of development from theory to lab to practical application. It highlights new biocompatibility issues, metrics, and statistics as well as new...
Taylor & Francis Group, 2013. — 820 p. Oceans are an abundant source of diverse biomaterials with potential for an array of uses. Marine Biomaterials: Characterization, Isolation and Applications brings together the wide range of research in this important area, including the latest developments and applications, from preliminary research to clinical trials. The book is divided...
Wiley, 2012. - 587 p. - Biomimetics, in general terms, aims at understanding biological principles and applying them for the development of man-made tools and technologies. This approach is particularly important for the purposeful design of passive as well as functional biomaterials that mimic physicochemical, mechanical and biological properties of natural materials, making them...
ITexLi, 2022. — 156 p. — ISBN 1803554126 9781803554129 1803554118 9781803554112 1803554134 9781803554136. This volume provides a thorough overview of the different uses of collagen-based biomaterials produced for tissue engineering, to offer a functional material for use in regenerative medicine from the laboratory bench to the patient bedside. Collagen is the most abundant...
Springer, 2023. — 146 p. — ISBN 978-981-19-9299-5. This book encompasses Materials Engineering with Medical Science which introduces the depth of knowledge from beginning with relevant fundamentals. This book fills the void which comprises a broad range of Materials Engineering with Medical science, from atomic physics to histology. This book greatly benefits towards those...
Woodhead Publishing Limited, 2014. — 331 p. Rapid Prototyping of Biomaterials: Principles and Applications provides a comprehensive review of established and emerging rapid prototyping technologies (such as bioprinting) for medical applications. Rapid prototyping, also known as layer manufacturing, additive manufacturing, solid freeform fabrication, or 3D printing, can be used...
2nd Edition. — Woodhead Publishing, 2020. — 351 p. — (Biomaterials). — ISBN: 978-0-08-102663-2. This book, Second Edition, provides a comprehensive review of emerging rapid prototyping technologies, such as bioprinting, for biomedical applications. Rapid prototyping, also known as additive manufacturing, solid freeform fabrication, or 3D printing, can be used to create complex...
ITexLi, 2022. — 71 p. — ISBN 1803557273 9781803557274 1803557265 9781803557267 1803557281 9781803557281. This book provides a comprehensive overview of rapid prototyping, also known as 3D printing. It discusses challenges in this domain, such as lack of standardization and certification, as well as the requirements coming from the industrial sector. The book examines existing...
Springer, 2011. — 632 p. — ISBN 978-3-642-02823-6. Tissue engineering is a multidisciplinary field incorporating the principles of biology, chemistry, engineering, and medicine to create biological substitutes of native tissues for scientific research or clinical use. Specific applications of this technology include studies of tissue development and function, investigating drug...
InTech. 2011. 502 p. These contribution books collect reviews and original articles from eminent experts working in the interdisciplinary arena of biomaterial development and use. From their direct and recent experience, the readers can achieve a wide vision on the new and ongoing potentialities of different synthetic and engineered biomaterials. Contributions were selected not...
InTech. 2011. 468 p. These contribution books collect reviews and original articles from eminent experts working in the interdisciplinary arena of biomaterial development and use. From their direct and recent experience, the readers can achieve a wide vision on the new and ongoing potentials of different synthetic and engineered biomaterials. Contributions were not selected...
Smithers Information Ltd., 2017. — 204 p. Demand for products made from renewable, sustainable and eco-friendly raw materials is increasing, and will further increase substantially in the future. Awareness of the adverse impacts of synthetic products on the environment, increasingly stringent governmental regulations on the use and disposable of non-biodegradable products, and...
CRC Press, Wоodhead Publishing Ltd, 2005. — 802 p. Given such problems as rejection, the interface between an implant and its human host is a critical area in biomaterials. Surfaces and interfaces for biomaterials summarises the wealth of research on understanding the surface properties of biomaterials and the way they interact with human tissue. The first part of the book...
IOS Press, 2015. — 86 p.
Additive manufacturing or 3D printing, manufacturing a product layer by layer, offers large design freedom and faster product development cycles, as well as low startup cost of production, on-demand production and local production. In principle, any product could be made by additive manufacturing. Even food and living organic cells can be printed. We...
Woodhead Publishing, 2016. - 352 p. Laser Surface Modification of Biomaterials: Techniques and Applications covers this expanding field, which has many potential applications, including biomaterials. Laser surface modification of biomaterials enables the production of hybrid materials with different functionality in the bulk as well as the thin, sub-micrometer surface layer....
ITexLi, 2023. — 228 p. — ISBN 0850140919 9780850140910 0850140900 9780850140903 0850140927 9780850140927. Biomedical technology is continually changing, and new approaches are being developed daily. Although widely used, conventional solutions are losing efficacy due to the evolution of microorganisms and the environment. Pathologies and diseases negatively affect humans and...
ITexLi, 2020. — 145 p. — ISBN 1789844657 9781789844658 1839627395 9781839627392. This book provides an overview of biomaterials science with a focus on health and medical applications that can be improved with new biomaterials with non-allergenic elements. It is designed for students, doctors, patients, and researchers worldwide. These materials are designed to meet functional...
Woodhead Publishing, Elsevier, 2015. — 431 p. — ISBN: 978-1-78242-303-4; ISBN: 978-1-78242-316-4. Despite advances in alternative materials, metals are still the biomaterial of choice for a number of clinical applications such as dental, orthopedic and cardiac implants. However, there are a number of intrinsic problems associated with implanting metal in the biological...
Woodhead Publishing, 2011. — 415 p. — (Woodhead Publishing in Materials). The surface modification of biomaterials plays a significant role in determining the outcome of biological-material interactions. With the appropriate modification a material’s surface can be tailored to improve biocompatibility, adhesion and cell interactions. Consequently surface modification is vital...
CRC Press, 2010. — 221 p. The field of biomedical engineering has vastly expanded in the past two decades, as reflected in the increased number of bioengineering and biomaterials programs at universities. The growth of this area has outpaced the development of laboratory courses that allow students hands-on experience, since the barriers involved in creating multidisciplinary...
Monograph. — Smithers Rapra Technology, 2015. — 240 p. Materials science holds the key to product development, improvement and failure analysis and, consequently, failure avoidance. Both in theory and practice, materials science is a complex combination of several scientific disciplines, including chemistry, physics, engineering and various technological disciplines. This book...
Учебное пособие. — СПб.: СПбГУ ИТМО, 2011. — 118 с.
В учебном пособии, являющемся разделом модуля инновационного учебно−методического комплекса по дисциплине "Лазерные технологии в биомедицине", изложены вопросы, связанные с физическими процессами, происходящими при абляции биотканей лазерным излучением, представлены результаты теоретических и экспериментальных исследований...
Учебное пособие для студ. фак. Нано- и биомедицинских технологий. — Саратов: СГУ, 2007. — 52 с. В учебном пособии описываются основные этапы развития биоматериалов, рассматриваются в хронологическом порядке материалы различных поколений (с первого по четвертое). Особое внимание уделяется методам создания новых истинно интеллектуальных структур. Акцент сделан на практическое...
Науч. ред. О. А. Голованова. — Омск : Изд-во Ом. гос. ун-та, 2019. — 147 с. — ISBNЖ 978-5-7779-2265-6 Представлены новейшие данные о перспективных материалах биомедицинского назначения, способах их исследования и переработки в специализированные изделия. Подготовлена по итогам работы молодежной школы-семинара «Современные методы исследования в диагностике бионаноматериалов и...
Навчальний посібник. — Суми: Сумський державний університет, 2020. — 300 с. Навчальний посібник містить інформацію про стан досліджень у сфері сучасних біоматеріалів і покриттів, зокрема розробок у лабораторії «Біонанокомпозит» СумДУ. Для студентів спеціальності 163 «Біомедична інженерія» спеціалізації «Біоматеріали» закладів вищої освіти III−IV рівнів акредитації.
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