Results 181 to 190 of about 11,616 (223)
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Clinical Orthopaedics and Related Research, 1990
Bioceramics of aluminum oxide and calcium phosphate have a wide range of applications in orthopedic surgery. Each type of bioceramic is substantially different from the other, and variations exist within each type depending on the source and intended application.
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Bioceramics of aluminum oxide and calcium phosphate have a wide range of applications in orthopedic surgery. Each type of bioceramic is substantially different from the other, and variations exist within each type depending on the source and intended application.
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2012
After roughly 100 years of controlled clinical use, the in vivo and in vitro degradation mechanisms of ceramic materials are still largely unknown. In bioinert ceramics such as alumina and zirconia used in orthopedics, crack propagation mechanisms are well known, but their interactions with other degradation mechanisms (low-temperature degradation ...
Gremillard, Laurent +7 more
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After roughly 100 years of controlled clinical use, the in vivo and in vitro degradation mechanisms of ceramic materials are still largely unknown. In bioinert ceramics such as alumina and zirconia used in orthopedics, crack propagation mechanisms are well known, but their interactions with other degradation mechanisms (low-temperature degradation ...
Gremillard, Laurent +7 more
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Bioceramic fabrics improve quiet standing posture and handstand stability in expert gymnasts [PDF]
Bioceramic fabrics have been claimed to improve blood circulation, thermoregulation and muscle relaxation, thereby also improving muscular activity. Here we tested whether bioceramic fabrics have an effect on postural control and contribute to improve ...
Viviana Gianocca, Michel Guerraz
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Calcium phosphate bioceramics and bioceramic composites
Journal of Sol-Gel Science and Technology, 2010This paper reviews selected aspects of research work carried out in bioceramics and bioceramic composites at the Ceramics Laboratory IIT, Bombay, India. The focus here is in understanding and developing calcium hydroxyapatite (HA) bioceramics and biocomposites, including calcium hydroxyapatite-titanium (HA-Ti) and calcium hydroxyapatite ...
Deepak K. Pattanayak +2 more
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2019
During the last five decades, the capability to engineer or repair new functional tissues by using porous and monolithic ceramics has been a very effective approach to improve the quality of life of patients. Although the use of natural and synthetic materials in body reconstruction and repair goes back to pre-historic times their use have been ...
Ben-Nissan, Besim +2 more
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During the last five decades, the capability to engineer or repair new functional tissues by using porous and monolithic ceramics has been a very effective approach to improve the quality of life of patients. Although the use of natural and synthetic materials in body reconstruction and repair goes back to pre-historic times their use have been ...
Ben-Nissan, Besim +2 more
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Microstructural comparison of synthetic bioceramics with natural bioceramics
Proceedings, annual meeting, Electron Microscopy Society of America, 1991Hydroxyapatite bioceramics has attracted many material scientists as it is the main constituent of the bone and the teeth in human body. The synthesis of the bioceramics has been performed for years. Nowadays, the synthetic work is not only focused on the hydroapatite but also on the fluorapatite and chlorapatite bioceramics since later materials have ...
Shulin Wen +3 more
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Bioceramics of calcium orthophosphates
Biomaterials, 2010A strong interest in use of ceramics for biomedical applications appeared in the late 1960's. Used initially as alternatives to metals in order to increase a biocompatibility of implants, bioceramics have become a diverse class of biomaterials, presently including three basic types: relatively bioinert ceramics, bioactive (or surface reactive) and ...
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Bioceramics and the origin of life
Journal of Biomedical Materials Research, 1989AbstractCreation of life involves establishing an organism that is capable of self‐maintenance, self‐reproduction, and adjustment to a changing environment. A Bioactive Substrate Theory of the origin of life is proposed, where the function of the bioactive substrates was to achieve the irreversible ordering of macromolecules into replicative structures.
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