Share

Nanoceramics in Clinical Use

Download Nanoceramics in Clinical Use PDF Online Free

Author :
Release : 2016
Genre : Medical
Kind : eBook
Book Rating : 040/5 ( reviews)

GET EBOOK


Book Synopsis Nanoceramics in Clinical Use by : María Vallet-Regí

Download or read book Nanoceramics in Clinical Use written by María Vallet-Regí. This book was released on 2016. Available in PDF, EPUB and Kindle. Book excerpt: Provides a comprehensive overview of the field of nanoceramics for biomedical applications, from fundamental principles to latest advances.

Biomimetic Nanoceramics in Clinical Use

Download Biomimetic Nanoceramics in Clinical Use PDF Online Free

Author :
Release : 2008
Genre : Medical
Kind : eBook
Book Rating : 427/5 ( reviews)

GET EBOOK


Book Synopsis Biomimetic Nanoceramics in Clinical Use by : Maria Vallet-Regí

Download or read book Biomimetic Nanoceramics in Clinical Use written by Maria Vallet-Regí. This book was released on 2008. Available in PDF, EPUB and Kindle. Book excerpt: The first book on bioactive nanoceramics to unite the many multidisciplinary concepts useful for those working in bioceramics today.

Biomimetic Nanoceramics in Clinical Use

Download Biomimetic Nanoceramics in Clinical Use PDF Online Free

Author :
Release : 2008-09-17
Genre : Science
Kind : eBook
Book Rating : 925/5 ( reviews)

GET EBOOK


Book Synopsis Biomimetic Nanoceramics in Clinical Use by : María Vallet-Regi

Download or read book Biomimetic Nanoceramics in Clinical Use written by María Vallet-Regi. This book was released on 2008-09-17. Available in PDF, EPUB and Kindle. Book excerpt: Recent developments in nanostructured materials have led to a shift in focus away from the replacement of tissues and towards regeneration. Nanoceramics with biomimetic properties have great potential in bone regeneration and new synthesis strategies have been developed to obtain materials with improved biocompatibility and multifunctional performance. The aim is to develop fully biocompatible implants, which exhibit biological responses at the nanometric scale in the same way that biogenic materials do. Current man-made implants are not fully biocompatible and always result in a foreign body reaction involving inflammatory response and fibrous encapsulation. Great efforts have, therefore, been made to develop synthetic strategies that tailor implant surfaces at the nanometric scale. The intention is to optimize the interaction at the tissue/implant interface thus improving quality of life for patients with enhanced results and shorter rehabilitation periods. This book deals with 'new bioceramics' for 'new applications'. Current and future applications are considered in terms of chemical composition, structure and properties. It explains the processes that (from the point of view of solid state and sol-gel chemistry) lead to better bone implants and other medical devices. The book is structured to make it useful for students of biomaterials, but also as a reference for specialists interested in specific topics. Didactic figures and schemes make it easy for under-graduates to understand and the extended bibliography is indispensable for researchers. The introductions to each chapter deal with some common fundamental concepts thus allowing the comprehension of each one independently. The first chapter describes biological hard tissues in vertebrates, from the point of view of mineralization processes. Concepts of hard tissue mineralization are employed to explain how nature works and an overview of artificial alternatives is provided. Chapter 2 details several synthesis methodologies used to prepare nano-apatites. The aim is to obtain artificial carbonated calcium deficient nano-apatites that resemble, as closely as possible, natural biological apatites. A review on synthesis methods is collected in the bibliography. Chapter 3 describes, in-depth, the biomimetic processes used to prepare apatites similar to biological ones. It focuses on hard tissue-related biomimetism and deals with nanoceramics obtained as a consequence of biomimetic processes. Valuable information about the most widely used biomimetic solutions and evaluation methods are included. The final chapter provides an overview of the current and potential clinical applications of apatite-like biomimetic nanoceramics, intended as biomaterials for hard tissue repair, therapy and diagnosis.

Nanoceramics in Clinical Use

Download Nanoceramics in Clinical Use PDF Online Free

Author :
Release : 2016
Genre :
Kind : eBook
Book Rating : 415/5 ( reviews)

GET EBOOK


Book Synopsis Nanoceramics in Clinical Use by : Maria Vallet-Regí

Download or read book Nanoceramics in Clinical Use written by Maria Vallet-Regí. This book was released on 2016. Available in PDF, EPUB and Kindle. Book excerpt:

Industrial Applications of Nanoceramics

Download Industrial Applications of Nanoceramics PDF Online Free

Author :
Release : 2024-01-20
Genre : Technology & Engineering
Kind : eBook
Book Rating : 442/5 ( reviews)

GET EBOOK


Book Synopsis Industrial Applications of Nanoceramics by : Shadpour Mallakpour

Download or read book Industrial Applications of Nanoceramics written by Shadpour Mallakpour. This book was released on 2024-01-20. Available in PDF, EPUB and Kindle. Book excerpt: Industrial Applications of Nanoceramics shows the unique processing, mechanical and surface characteristics of nanoceramics, covering their industrial application areas. These include the fabrication of capacitors, dense ceramics, corrosion-resistant coatings, solid electrolytes for fuel cells, sensors, batteries, cosmetic health, thermal barrier coatings, catalysts, bioengineering, automotive engineering, optoelectronics, computers, electronics, etc. This is an important reference source for materials scientists and engineers who are seeking to understand more about how nanoceramics are being used in a variety of industry sectors. Nanoceramics have the ability to show improved and unique properties, compared with conventional bulk ceramic materials. Zirconia (ZrO2), alumina (Al2O3), silicon carbide (SiC), silicon nitride (Si3N4) and titanium carbide fall into this category. Outlines the superior chemical, physical and mechanical properties of nanoceramics compared with their macroscale counterparts Includes major industrial applications of nanoceramics in energy, engineering and biomedicine Explains the major processing techniques used for nanoceramic-based materials

You may also like...