Get Advances in Calcium Phosphate Biomaterials PDF

By Besim Ben-Nissan

ISBN-10: 3642539793

ISBN-13: 9783642539794

ISBN-10: 3642539807

ISBN-13: 9783642539800

Advances in Calcium Phosphate Biomaterials offers a accomplished, cutting-edge assessment of the most recent advances in constructing calcium phosphate biomaterials and their functions in medication. It covers the basic buildings, synthesis tools, characterization tools, and the actual and chemical homes of calcium phosphate biomaterials, in addition to the synthesis and homes of calcium phosphate-based biomaterials in regenerative drugs and their scientific functions. The e-book brings jointly those new strategies, mechanisms and techniques in contributions by way of either younger and “veteran” lecturers, clinicians, and researchers to ahead the information and services on calcium phosphate and similar fabrics. therefore, the publication not just covers the basics but additionally open new avenues for assembly destiny demanding situations in examine and medical applications.

Besim Ben-Nissan is a Professor of Chemistry and Forensic technology on the collage of expertise, Sydney, Australia

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In: Yamamuro T, Wilson J, Hench LL (eds) Handbook of bioactive ceramics, vol 11. CRC Press, Boca Raton, pp 17–28 67. Daculsi G, Passuti N (1990) Bioactive ceramics fundamental properties and clinical applications: the Osseo-coalescence process. In: Heimcke G, Oonishi H (eds) Bioceramics, vol 2. Butterworth-Heinemann, Cologne, pp 3–10 68. Wykrota LL, Garrido CA, Wykrota FH (1998) Clinical evaluation of biphasic calcium phosphate ceramic used in orthopaedic lesions. In: LeGeros RZ, LeGeros JP (eds) Bioceramics, vol 11.

However, neither radiolucent line nor osteolysis was seen. (d) This is the second case of THA with IBBC in bilateral hips 29 years after THA. She has worked as a dancer for 28 years. Radiolucent line and osteolysis were seen in only small limited area (Fig. 6g). In non-IBBC cases with only conventional bone cement, when wear particles of polyethylene increased, phagocytosis occurred and osteolysis appeared on the radiograph. From the long-term clinical results of IBBC, the rate of formation of space or voids between HA and bone cement was less than 2 %.

Holes with a 6 mm diameter and a depth of 10 mm were made in both femoral condyles. The rabbits were sacrificed in groups of three at 2, 4, 6, 12, and 24 weeks after implantation, and a push-out test was performed. HA coating applied to a smooth titanium surface was used as a control. A relatively strong initial fixation was obtained immediately after implantation using the IBBC technique. Two weeks after implantation, the bonding strength of IBBC was higher than that of the HA coating, but at 6 weeks after implantation, the bonding strength of IBBC became similar to that of HA coating.

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Advances in Calcium Phosphate Biomaterials by Besim Ben-Nissan

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