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Fracture Resistance of E max Crowns Bonded with Bio-actice Cements : In Vitro Study /

dc.contributor.advisorSupervisor : Maged Elhakim, Lomaya Ghanem.
dc.contributor.authorMahdi, Omar Moutaz Elsayed Ahmed,
dc.date.accessioned2022-01-17T14:23:14Z
dc.date.accessioned2022-03-27T11:15:58Z
dc.date.available2022-01-17T14:23:14Z
dc.date.available2022-03-27T11:15:58Z
dc.date.submitted2019.
dc.descriptionDISSERTATION NOTE-Degree type M.Sc.
dc.descriptionDISSERTATION NOTE-Name of granting institution Misr International University, Faculty of Oral and Dental Medicine
dc.descriptionIncludes Arabic Summary.
dc.descriptionIncludes bibliographic references (pages 51-69)`
dc.description.abstractAt present, there is a trend to develop biomaterials that have bioactive functions, in addition to their basic properties. Bioactive glass was added to glass ionomer cements to stimulate bone growth, to replace bone, and to decrease dentine hypersensitivity. Incorporation of bioactive glass into commercial GICs to enhance bioactivity was examined. Bio active material introduce a specific biologic response at tissue surface interface. Once bioglass particles attach to dentine surface they form a surface hydroxycarboappetiate layer sealing the tubules, decreasing dentine hypersensitivity and dissolve ions that initiate the cell growth factors that cause cell regenerative and reconstructive capacity which is commonly known as regenerative dentistry. One of the bio active cements that is gaining attention nowadays is Ceramir crown and bridge. Many recent studies reported that ceramir crown and bridge showed no loss of retention, secondary caries or marginal discolorations, furthermore concerning the margins of all observed restorations the integrity was clinically sound, no sensitivity or gingival inflammation. This is why the study of bio active cements in comparison to other cements is of great importance nowadays.eng
dc.format.extent72 pages : illustrations, photo ; 30 cm
dc.format.mediumtext
dc.format.mimetypeapplication/pdf
dc.identifier.otherEG-CaMIU
dc.identifier.otherThs303
dc.identifier.urihttps://iorep.miuegypt.edu.eg/handle/20.500.13071/58
dc.language.isoeng
dc.subject.lcshFixed Prosthodontics
dc.titleFracture Resistance of E max Crowns Bonded with Bio-actice Cements : In Vitro Study /
dc.title.alternativeمقاومة الكسر لتيجان اى ماكس الملصوقة بالاسمنت النشط بيولوجيا :
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