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Advances in calcium phosphate biomaterials / edited by Besim Ben-Nissan.

Colaborador(es): Tipo de material: TextoTextoSeries Springer Series in Biomaterials Science and Engineering ; 2Editor: Berlin, Heidelberg : Springer Berlin Heidelberg : Springer, 2014Descripción: xxi, 547 páginas : 207 ilustraciones, 96 ilustraciones en colorTipo de contenido:
  • texto
Tipo de medio:
  • computadora
Tipo de portador:
  • recurso en línea
ISBN:
  • 9783642539800
Formatos físicos adicionales: Edición impresa:: Sin títuloClasificación LoC:
  • R857.M3
Recursos en línea:
Contenidos:
Introduction to Synthetic and Biologic Apatites -- Clinical applications of hydroxyapatite in orthopaedics -- Bioactive glass: Chronology, Characterization and Genetic Control of Tissue Regeneration -- The essential role of calcium phosphate bioceramics in bone regeneration -- Self-Assembly and Nano-Layering of Apatitic Calcium Phosphates in Biomaterials -- Signal Molecule-Calcium Phosphate Composites: Novel Approaches to Controlling Cellular and/or Biological Reactions and Functions -- Calcium phosphate cement -- Characterization of calcium phosphates using vibrational spectroscopies -- A review of hydroxyapatite coatings manufactured by thermal spray -- Bioactive composites reinforced with inorganic glasses and glass-ceramics for tissue engineering applications -- Development of Skeletal Drug Delivery System Based on Apatite/Collagen Composite Cement -- Nanocrystalline Apatite-Based Biomaterials and Stem Cells in Orthopaedics -- Marine Structures as Templates for Biomaterials -- Calcium phosphate derived from foraminifera structures as drug delivery systems and for bone tissue engineering -- History of Calcium Phosphates in Regenerative Medicine -- Advances in Calcium Phosphate Nano-coatings and Nano-composites -- Fundamental Structure and Properties of Enamel, Dentin and Cementum.
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Springer eBooks

Introduction to Synthetic and Biologic Apatites -- Clinical applications of hydroxyapatite in orthopaedics -- Bioactive glass: Chronology, Characterization and Genetic Control of Tissue Regeneration -- The essential role of calcium phosphate bioceramics in bone regeneration -- Self-Assembly and Nano-Layering of Apatitic Calcium Phosphates in Biomaterials -- Signal Molecule-Calcium Phosphate Composites: Novel Approaches to Controlling Cellular and/or Biological Reactions and Functions -- Calcium phosphate cement -- Characterization of calcium phosphates using vibrational spectroscopies -- A review of hydroxyapatite coatings manufactured by thermal spray -- Bioactive composites reinforced with inorganic glasses and glass-ceramics for tissue engineering applications -- Development of Skeletal Drug Delivery System Based on Apatite/Collagen Composite Cement -- Nanocrystalline Apatite-Based Biomaterials and Stem Cells in Orthopaedics -- Marine Structures as Templates for Biomaterials -- Calcium phosphate derived from foraminifera structures as drug delivery systems and for bone tissue engineering -- History of Calcium Phosphates in Regenerative Medicine -- Advances in Calcium Phosphate Nano-coatings and Nano-composites -- Fundamental Structure and Properties of Enamel, Dentin and Cementum.

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