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Also, described in brief are surface modification methods for bone tissue engineering applications.
The most frequently used surgical methods for bone grafts are guided bone regeneration (GBR), block bone graft (BBG), sinus lifting via lateral window, and bone-added osteotome technique.
Limitations of current clinical methods for bone repair continue to fuel the demand for a high strength, bioactive bone replacement material.
Such a demonstration would require the use of several bone samples with different densities and comparison with gold standard methods for bone density measurement, which was beyond the scope of this work.
Current methods for bone repair and regeneration rely heavily on the use of autografts, allografts and synthetic bone graft substitutes.
Bone tissue engineering provides alternative methods for bone defect treatment besides traditional solutions used in clinics, including autologous and allogeneic bone graft, vascularized grafts of the fibula and iliac crest, and other bone transplantation techniques [ 1].
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Therefore, evaluation methods for bone-implant contact characterisation are the subject of controversial discussion [ 13, 14, 16].
In the presented paper authors describe a method for bone scaffolds fabrication.
Tissue engineering using pluripotent stem cells is a new, promising method for bone repair.
The image platform used for this novel method for bone marrow dosimetry (PhONSAi) was developed by Tobias Magnander (EJNMMI physics. 2016; 3:1).
This study presents a new MR-based method for bone attenuation correction, based on 31P-MRI of hydroxyapatite crystals.
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