
Bioceramics 32
Trans Tech Publications Ltd (Publisher)
Published on 23. March 2023
Book
Paperback/Softback
100 pages
978-3-0357-1721-1 (ISBN)
Description
This issue represents the research results in synthesis and processing technologies of bioceramic materials for various biomedical applications, from bone regeneration and dental restoration to drug delivery systems and skin tissue engineering. The edition will be helpful to specialists in biomaterials and tissue engineering. The articles collected in this book were presented at the 32nd Symposium and Annual Meeting of the International Society of Ceramics in Medicine (Bioceramics 32).
More details
Language
English
Place of publication
Zurich
Switzerland
Publishing group
Trans Tech
Target group
Professional and scholarly
Illustrations
Illustrations, unspecified
Dimensions
Height: 24 cm
Width: 17 cm
Thickness: 0.5 cm
Weight
320 gr
ISBN-13
978-3-0357-1721-1 (9783035717211)
DOI
10.4028/b-c3v4ev
Schweitzer Classification
Other editions
Additional editions

Trans Tech Publications Ltd | Anna Tampieri | Simone Sprio
Bioceramics 32
E-Book
03/2023
Trans Tech Publications Ltd
€85.60
Available for download
Persons
Content
<ul><li>Preface</li><li>Chapter 1: Synthesis Technologies and Assessment of Osteoconductivity, Bio- and Cytocompatibility</li><li>Opening New Avenues for Bioceramics: Oscillatory Flow Reactors and Upcoming Technologies in Skin-Tissue Engineering</li><li>Calcium Phosphate Nanoparticles as Carriers of Therapeutic Peptides</li><li>Type I Collagen-Apatite Fibrillar Nanocomposites: Mineralization, Crosslinking and Anti-Inflammatory Cocrystal Impregnation for Bone Tissue Engineering</li><li>Calcium Carbonate/Hydroxyapatite Microparticles and Osteoblast Responses</li><li>Osteoblast-Mediated Resorption of Porous Bioactive SCPC Granules Enhances Bone Regeneration in Human Extraction Sockets</li><li>
<i>In Vivo</i> Evaluation of Calcium-Phosphate Ceramics with Highly-Interconnected Pores Using Porcine Tibia Defect Model</li><li>Investigation of Microwave Sintering of B-Type Carbonated Hydroxyapatite Bioceramics</li><li>New Approach to Identify the Physiological State of Bone Cells at the Surface of Hydroxyapatite Bioceramics</li><li>Apatite-Graphene and Apatite-Graphene Oxide Nanocomposites: Hybrid Materials with Tailored Biological and Luminescent Properties</li><li>Chapter 2: 3D Technologies in Scaffolds Production and Dental Restoration</li><li>Processing by Laser Stereolithography and <i>In Vitro</i> Biological Evaluation of Hydroxyapatite Scaffolds Mimicking Human Trabecular Bone Architecture</li><li>Structural and Mechanical Characterization of 3D Printed Hydroxyapatite Scaffolds Designed for Biomedical Applications</li><li>Selective Laser Melting-Sintering Technology: From Dental Co-Cr Alloys to Dental Ceramic Materials</li></ul>
<i>In Vivo</i> Evaluation of Calcium-Phosphate Ceramics with Highly-Interconnected Pores Using Porcine Tibia Defect Model</li><li>Investigation of Microwave Sintering of B-Type Carbonated Hydroxyapatite Bioceramics</li><li>New Approach to Identify the Physiological State of Bone Cells at the Surface of Hydroxyapatite Bioceramics</li><li>Apatite-Graphene and Apatite-Graphene Oxide Nanocomposites: Hybrid Materials with Tailored Biological and Luminescent Properties</li><li>Chapter 2: 3D Technologies in Scaffolds Production and Dental Restoration</li><li>Processing by Laser Stereolithography and <i>In Vitro</i> Biological Evaluation of Hydroxyapatite Scaffolds Mimicking Human Trabecular Bone Architecture</li><li>Structural and Mechanical Characterization of 3D Printed Hydroxyapatite Scaffolds Designed for Biomedical Applications</li><li>Selective Laser Melting-Sintering Technology: From Dental Co-Cr Alloys to Dental Ceramic Materials</li></ul>