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The ultimate goal in periodontal therapy is creation of an environment that is conducive to maintaining patient's dentition in health, comfort, and function. Bone replacement grafts are widely used to promote bone formation and periodontal regeneration. Conventional surgical approaches, such as open flap debridement, provide critical access to evaluate and detoxify root surfaces as well as establish improved periodontal form and architecture; however, these surgical techniques offer only limited potential in restoring or reconstituting component periodontal tissues.Bone grafting materials…mehr

Produktbeschreibung
The ultimate goal in periodontal therapy is creation of an environment that is conducive to maintaining patient's dentition in health, comfort, and function. Bone replacement grafts are widely used to promote bone formation and periodontal regeneration. Conventional surgical approaches, such as open flap debridement, provide critical access to evaluate and detoxify root surfaces as well as establish improved periodontal form and architecture; however, these surgical techniques offer only limited potential in restoring or reconstituting component periodontal tissues.Bone grafting materials function, in part, as structural scaffolds and matrices for attachment and proliferation of anchorage-dependent osteoblasts. Multiple classification systems have been used to organize bone replacement grafts, which commonly include source (e.g., allograft), chemical composition (e.g., calcium phosphate) and physical properties (e.g., ceramic). Advances in material sciences, however, have increasingly blurred such boundaries between types of bone replacement grafts.
Autorenporträt
Dr. Mohammad Aamir is currently working as an assistant professor in the Department of Periodontology & Implantology at BBD College of Dental Science, Lucknow, UP. He completed his graduation in 2015 and post-graduation in Periodontology & Implantology in 2019 from SPPGIDMS, Lucknow, UP. He completed his EPGP(HCM) in 2022 from LIBA, Chennai.