Learning From Nature How To Design New Implantable Biomaterials From Biomineralization Fundamentals To Biomimetic Materials And Processing Routes
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Author |
: Rui L. Reis |
Publisher |
: Springer Science & Business Media |
Total Pages |
: 240 |
Release |
: 2005-12-29 |
ISBN-10 |
: 9781402026485 |
ISBN-13 |
: 140202648X |
Rating |
: 4/5 (85 Downloads) |
Synopsis Learning from Nature How to Design New Implantable Biomaterials: From Biomineralization Fundamentals to Biomimetic Materials and Processing Routes by : Rui L. Reis
The development of materials for any replacement or regeneration application should be based on the thorough understanding of the structure to be substituted. This is true in many fields, but particularly exigent in substitution and regeneration medicine. The demands upon the material properties largely depend on the site of application and the function it has to restore. Ideally, a replacement material should mimic the living tissue from a mechanical, chemical, biological and functional point of view. Of course this is much easier to write down than to implement in clinical practice. Mineralized tissues such as bones, tooth and shells have attracted, in the last few years, considerable interest as natural anisotropic composite structures with adequate mechanical properties. In fact, Nature is and will continue to be the best materials scientist ever. Who better than nature can design complex structures and control the intricate phenomena (processing routes) that lead to the final shape and structure (from the macro to the nano level) of living creatures? Who can combine biological and physico-chemical mechanisms in such a way that can build ideal structure-properties relationships? Who, else than Nature, can really design smart structural components that respond in-situ to exterior stimulus, being able of adapting constantly their microstructure and correspondent properties? In the described philosophy line, mineralized tissues and biomineralization processes are ideal examples to learn-from for the materials scientist of the future.
Author |
: |
Publisher |
: |
Total Pages |
: 104 |
Release |
: 2003 |
ISBN-10 |
: OCLC:803552387 |
ISBN-13 |
: |
Rating |
: 4/5 (87 Downloads) |
Synopsis Learning from Nature how to Design New Implantable Biomaterials by :
Author |
: Advanced Study Institute on Learning from Nature How to Design New Implantable Biomaterials: From Biomineralization Fundamentals to Biomimetic Materials and Processing Routes |
Publisher |
: |
Total Pages |
: 6 |
Release |
: 2005 |
ISBN-10 |
: OCLC:437154628 |
ISBN-13 |
: |
Rating |
: 4/5 (28 Downloads) |
Synopsis NATO Advanced Study Institute (ASI) on Learning from Nature How to Design New Implantable Biomaterials: From Biomineralization Fundamentals to Biomimetic Materials and Processing Routes by : Advanced Study Institute on Learning from Nature How to Design New Implantable Biomaterials: From Biomineralization Fundamentals to Biomimetic Materials and Processing Routes
Author |
: |
Publisher |
: |
Total Pages |
: 154 |
Release |
: 2005 |
ISBN-10 |
: OCLC:437154628 |
ISBN-13 |
: |
Rating |
: 4/5 (28 Downloads) |
Synopsis NATO Advanced Study Institute (ASI) on Learning from Nature How to Design New Implantable Biomaterials: From Biomineralization Fundamentals to Biomimetic Materials and Processing Routes by :
Author |
: Conrado Aparicio |
Publisher |
: Woodhead Publishing |
Total Pages |
: 504 |
Release |
: 2015-09-28 |
ISBN-10 |
: 9781782423560 |
ISBN-13 |
: 1782423567 |
Rating |
: 4/5 (60 Downloads) |
Synopsis Biomineralization and Biomaterials by : Conrado Aparicio
Biomineralization is a natural process by which living organisms form minerals in association with organic biostructures to form hybrid biological materials such as bone, enamel, dentine and nacre among others. Scientists have researched the fundamentals of these processes and the unique structures and properties of the resulting mineralized tissues. Inspired by them, new biomaterials for tissue engineering and regenerative medicine have been developed in recent years. Biomineralization and biomaterials: fundamentals and applications looks at the characteristics of these essential processes and natural materials and describes strategies and technologies to biomimetically design and produce biomaterials with improved biological performance. - Provides a thorough overview of the biomineralization process - Presents the most recent information on the natural process by which crystals in tissues form into inorganic structures such as bone, teeth, and other natural mineralized tissues - Investigates methods for improving mineralization - Explores new techniques that will help improve the biomimetic process
Author |
: Jean-Francois Le Gall |
Publisher |
: Springer Science & Business Media |
Total Pages |
: 438 |
Release |
: 1999-07-01 |
ISBN-10 |
: 3764361263 |
ISBN-13 |
: 9783764361266 |
Rating |
: 4/5 (63 Downloads) |
Synopsis Spatial Branching Processes, Random Snakes and Partial Differential Equations by : Jean-Francois Le Gall
This book introduces several remarkable new probabilistic objects that combine spatial motion with a continuous branching phenomenon and are closely related to certain semilinear partial differential equations (PDE). The Brownian snake approach is used to give a powerful representation of superprocesses and also to investigate connections between superprocesses and PDEs. These are notable because almost every important probabilistic question corresponds to a significant analytic problem.
Author |
: Ilaria Mazzoleni |
Publisher |
: CRC Press |
Total Pages |
: 266 |
Release |
: 2013-03-21 |
ISBN-10 |
: 9781040077610 |
ISBN-13 |
: 1040077617 |
Rating |
: 4/5 (10 Downloads) |
Synopsis Architecture Follows Nature-Biomimetic Principles for Innovative Design by : Ilaria Mazzoleni
This full-color volume proposes an innovative methodology that uses the functional aspects of nature to inspire improvements in building design and form, encouraging designers to apply biomimetic principles to architectural processes. The book focuses on the analysis of various animal skins, translating the principles of communication, thermoregulation, water balance, and protection into the built environment. Illustrating how biomimetic principles can create a more sustainable way of building, this is the first time the author's new methodology-as well as the 12 case studies-has been published.
Author |
: Rui L. Reis |
Publisher |
: Elsevier |
Total Pages |
: 829 |
Release |
: 2008-08-15 |
ISBN-10 |
: 9781845694814 |
ISBN-13 |
: 1845694813 |
Rating |
: 4/5 (14 Downloads) |
Synopsis Natural-Based Polymers for Biomedical Applications by : Rui L. Reis
Polymers from natural sources are particularly useful as biomaterials and in regenerative medicine, given their similarity to the extracellular matrix and other polymers in the human body. This important book reviews the wealth of research on both tried and promising new natural-based biomedical polymers, together with their applications as implantable biomaterials, controlled-release carriers or scaffolds for tissue engineering.The first part of the book reviews the sources, processing and properties of natural-based polymers for biomedical applications. Part two describes how the surfaces of polymer-based biomaterials can be modified to improve their functionality. The third part of the book discusses the use of natural-based polymers for biodegradable scaffolds and hydrogels in tissue engineering. Building on this foundation, Part four looks at the particular use of natural-gelling polymers for encapsulation, tissue engineering and regenerative medicine. The penultimate group of chapters reviews the use of natural-based polymers as delivery systems for drugs, hormones, enzymes and growth factors. The final part of the book summarises research on the key issue of biocompatibility.Natural-based polymers for biomedical applications is a standard reference for biomedical engineers, those studying and researching in this important area, and the medical community. - Examines the sources, processing and properties of natural based polymers for biomedical applications - Explains how the surfaces of polymer based biomaterials can be modified to improve their functionality - Discusses the use of natural based polymers for hydrogels in tissue engineering, and in particular natural gelling polymers for encapsulation and regenerative medicine
Author |
: Kantesh Balani |
Publisher |
: John Wiley & Sons |
Total Pages |
: 397 |
Release |
: 2015-01-26 |
ISBN-10 |
: 9781118950630 |
ISBN-13 |
: 1118950631 |
Rating |
: 4/5 (30 Downloads) |
Synopsis Biosurfaces by : Kantesh Balani
Ideal as a graduate textbook, this title is aimed at helping design effective biomaterials, taking into account the complex interactions that occur at the interface when a synthetic material is inserted into a living system. Surface reactivity, biochemistry, substrates, cleaning, preparation, and coatings are presented, with numerous case studies and applications throughout. Highlights include: Starts with concepts and works up to real-life applications such as implantable devices, medical devices, prosthetics, and drug delivery technology Addresses surface reactivity, requirements for surface coating, cleaning and preparation techniques, and characterization Discusses the biological response to coatings Addresses biomaterial-tissue interaction Incorporates nanomechanical properties and processing strategies
Author |
: Alexander E.S. Van Driessche |
Publisher |
: Springer |
Total Pages |
: 380 |
Release |
: 2016-12-20 |
ISBN-10 |
: 9783319456690 |
ISBN-13 |
: 3319456695 |
Rating |
: 4/5 (90 Downloads) |
Synopsis New Perspectives on Mineral Nucleation and Growth by : Alexander E.S. Van Driessche
In the last decade, numerous studies have demonstrated the existence of alternative pathways to nucleation and crystallisation that oppose the classical view. Such proposed scenarios include multistage reactions proceeding via various precursor species and/or intermediate phases. The aim of this book is to review and discuss these recent advances in our understanding of the early stages of mineralisation through a series of contributions that address both experimental and theoretical studies about the formation and nature of initial precursor species (e.g., prenucleation clusters, dense liquid phases, amorphous nanoparticles, etc.) as well as their transformations leading to the stable mineral phase. Several chapters are devoted to cutting-edge analytical techniques used for investigating the above processes in situ, in real time and at conditions relevant to both natural and industrial processes. At the end of the book, the editors summarize the key questions that still need to be addressed in order to establish a complete picture of the nucleation and growth processes involved during the formation of minerals