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Article type: Research Article
Authors: Tadano, Shigeru; | Yamada, Satoshi | Kanaoka, Masaru
Affiliations: Division of Human Mechanical Systems and Design, Faculty of Engineering, Hokkaido University, Sapporo, Japan | Mitsubishi Electric Corporation, Nagoya, Japan
Note: [] Address for correspondence: Professor Shigeru Tadano, PhD, Division of Human Mechanical Systems and Design, Faculty of Engineering, Hokkaido University, N13 W8, Kita-ku, Sapporo, Hokkaido 060-8628, Japan. Tel./Fax: +81 11 7066405; E-mail: [email protected]
Abstract: Orthopedic implants are widely used to repair bones and to replace articulating joint surfaces. It is important to develop an instantaneous technique for the direct bonding of bone and implant materials. The aim of this study was to develop a technique for the laser bonding of bone with an implant material like ceramics. Ceramic specimens (10 mm diameter and 1 mm thickness) were sintered with hydroxyapatite and MgO–Al2O3–SiO2 glass powders mixed in 40:60 wt% proportions. A small hole was bored at the center of a ceramic specimen. The ceramic specimen was positioned onto a bovine bone specimen and a 5 mm diameter area of the ceramic specimen was irradiated using a fiber laser beam (1070–1080 nm wavelength). As a result, the bone and the ceramic specimens bonded strongly under the irradiation conditions of a 400 W laser power and a 1.0 s exposure time. The maximum shear strength was 5.3±2.3 N. A bonding substance that penetrated deeply into the bone specimen was generated around the hole in the ceramic specimen. On using the fiber laser, the ceramic specimen instantaneously bonded to the bone specimen. Further, the irradiation conditions required for the bonding were investigated.
Keywords: Bone, biomechanics, fiber laser, bonding, ceramics, hydroxyapatite
DOI: 10.3233/BME-140960
Journal: Bio-Medical Materials and Engineering, vol. 24, no. 3, pp. 1555-1562, 2014
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