Results 171 to 180 of about 11,616 (223)
Bioceramic bone tissue-engineered substitutes with anti-inflammatory effects in periodontitis. [PDF]
Xiao B +7 more
europepmc +1 more source
Effect of Different Sealers and Irrigants on the Push-Out Bond Strength of Fiber Posts to The Root Canal. [PDF]
Fundaoğlu Küçükekenci F.
europepmc +1 more source
Bioceramics proceedings of the 1st International Bioceramic Symposium
Oonishi, Hironobu +1 more
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Bioceramic coatings on metallic implants: An overview [PDF]
Metallic implants sometimes fail in orthopedic surgeries due to insufficient bio-functionality, implant-associated infections, poor osteointegration due to high inertness (Ti, Co–Cr, stainless steel alloys), and a too fast degradation rate (Mg-based ...
Fatemeh Hosseinzadeh +2 more
exaly +2 more sources
Antimicrobial and Antibiofilm Properties of Bioceramic Materials in Endodontics
Microbes are prevalent in the root canals of necrotic teeth, and they are the cause of primary and post-treatment apical periodontitis. Bacteria can dwell within the infected root canal system as surface-adherent biofilm structures, which exhibit high ...
Ya Shen +2 more
exaly +2 more sources
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Journal of the American Ceramic Society, 1998
Ceramics used for the repair and reconstruction of diseased or damaged parts of the musculo‐skeletal system, termed bioceramics, may be bioinert (e.g., alumina and zirconia), resorbable (e.g., tricalcium phosphate), bioactive (e.g., hydroxyapatite, bioactive glasses, and glass‐ceramics), or porous for tissue ingrowth (e.g., hydroxyapatite‐coated metals)
RZ LeGeros, JP LeGeros
+5 more sources
Ceramics used for the repair and reconstruction of diseased or damaged parts of the musculo‐skeletal system, termed bioceramics, may be bioinert (e.g., alumina and zirconia), resorbable (e.g., tricalcium phosphate), bioactive (e.g., hydroxyapatite, bioactive glasses, and glass‐ceramics), or porous for tissue ingrowth (e.g., hydroxyapatite‐coated metals)
RZ LeGeros, JP LeGeros
+5 more sources
2023
Bioceramics commonly employed materials for the restoration, replacement and recovery of unhealthy and impaired pieces of the muscle and skeletal system, as well as periodontal anomalies. According to the host tissue interactions, bioceramics can be graded as nearly bioinert, bioactive, and bioresorbable.
ALTAN, ERAY, GÜNDÜZ, OĞUZHAN
+5 more sources
Bioceramics commonly employed materials for the restoration, replacement and recovery of unhealthy and impaired pieces of the muscle and skeletal system, as well as periodontal anomalies. According to the host tissue interactions, bioceramics can be graded as nearly bioinert, bioactive, and bioresorbable.
ALTAN, ERAY, GÜNDÜZ, OĞUZHAN
+5 more sources
Journal of Biomedical Materials Research, 1972
AbstractMetals and polymers have received considerable attention with respect to their potential use in human implantation. Serious study of the ceramics for this purpose has only recently begun. Materials for implantation in any body site must meet certain requirements.
G E, Garrington, P M, Lightbody
openaire +2 more sources
AbstractMetals and polymers have received considerable attention with respect to their potential use in human implantation. Serious study of the ceramics for this purpose has only recently begun. Materials for implantation in any body site must meet certain requirements.
G E, Garrington, P M, Lightbody
openaire +2 more sources
MRS Bulletin, 1991
The innovative use of specially designed ceramics to repair and reconstruct diseased or damaged parts of the body has improved the quality of life, and in some cases the length of life, for thousands of people. Ceramics used for this purpose are termed “bioceramics” and can be single crystals (sapphire), polycrystalline (alumina or hydroxylapatite ...
Larry L. Hench, June Wilson
openaire +2 more sources
The innovative use of specially designed ceramics to repair and reconstruct diseased or damaged parts of the body has improved the quality of life, and in some cases the length of life, for thousands of people. Ceramics used for this purpose are termed “bioceramics” and can be single crystals (sapphire), polycrystalline (alumina or hydroxylapatite ...
Larry L. Hench, June Wilson
openaire +2 more sources
Nanomedicine, 2006
Nanostructured materials possess unique capabilities for specific interactions with biological entities. This article reviews several types of nanostructured ceramics, cements and coatings that are being considered for use in medical applications.
Tanya, Traykova +3 more
openaire +2 more sources
Nanostructured materials possess unique capabilities for specific interactions with biological entities. This article reviews several types of nanostructured ceramics, cements and coatings that are being considered for use in medical applications.
Tanya, Traykova +3 more
openaire +2 more sources

