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Microshear bond strength of self adhering flowable composite to dentin with and without using galla chinensis extract : in vitro study / Engy Mostafa Magdy Abdou ; Supervised Mohamed Adel Ezzat , Eman Abouauf

By: Contributor(s): Material type: TextTextLanguage: English Publication details: Cairo : Engy Mostafa Magdy Abdou , 2017Description: 53 P. : charts , facsimiles ; 25cmOther title:
  • قوة الربط القصي الدقيق للمركبات الراتنجية الانسيابية ذاتية الالتصاق مع العاج السني مع وبدون استخدام مستخرج نبات الجول : دراسة معملية [Added title page title]
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Dissertation note: Thesis (M.Sc.) - Cairo University - Faculty of Oral and Dental Medicine - Department of Operative Dentistry Summary: This the study was performed to evaluate the effect of the collagen crosslinking abilities of Galla Chinensis Extract (GCE) on the micro shear bond strength durability of self-adhering flowable composite to dentin. M&M: Fifty two extracted human molars were selected, enamel surfaces were flattened.The teeth were randomly divided into two main groups (A) (n=26). (A0) was for self-adhering flowable composite without GCE (control) and (A1) was for self-adhering flowable composite with GCE. Each main group was divided into two subgroups (T) according to time of testing; (T1) after 24 hours, (T2) after three months (n=13). All specimens were stored in artificial saliva. Micro shear bond strength test was conducted immediately after 24 hours and after three months using universal testing machine.The results showed that the highest micro shear bond strength was for GCE group after 24 hours storage and the lowest mean micro shear bond strength for the control group after three months storage. There was a statistically significant difference (p{u2264}0.001) between the GCE groups and the control groups on the mean micro shear bond strength of Fusio{u2122} Liquid Dentin. Conclusion: GCE as a natural cross linking agent could be of positive value on the micro shear bond strength of self-adhering flowable composite and time has no significance on the micro shear bond strength
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Thesis Thesis قاعة الرسائل الجامعية - الدور الاول المكتبة المركزبة الجديدة - جامعة القاهرة Cai01.09.03.M.Sc.2017.En.M (Browse shelf(Opens below)) Not for loan 01010110075554000
CD - Rom CD - Rom مخـــزن الرســائل الجـــامعية - البدروم المكتبة المركزبة الجديدة - جامعة القاهرة Cai01.09.03.M.Sc.2017.En.M (Browse shelf(Opens below)) 75554.CD Not for loan 01020110075554000
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Cai01.09.03.M.Sc.2017.Di.R Remineralizing efficacy of biomimetic self-assembling peptide versus casein phosphopeptide amorphous calcium phosphate and fluoride based delivery systems in artificially induced enamel lesions : An in vitro study / Cai01.09.03.M.Sc.2017.Di.R Remineralizing efficacy of biomimetic self-assembling peptide versus casein phosphopeptide amorphous calcium phosphate and fluoride based delivery systems in artificially induced enamel lesions : An in vitro study / Cai01.09.03.M.Sc.2017.En.M Microshear bond strength of self adhering flowable composite to dentin with and without using galla chinensis extract : in vitro study / Cai01.09.03.M.Sc.2017.En.M Microshear bond strength of self adhering flowable composite to dentin with and without using galla chinensis extract : in vitro study / Cai01.09.03.M.Sc.2017.Ha.C A comparative study on surface microhardness and color change of enamel white spots lesions before and after application of an infiltrating resin versus casein phospho-peptide amorphous calcium phosphate with sodium fluoride remineralizing agent : An in vitro study / Cai01.09.03.M.Sc.2017.Ha.C A comparative study on surface microhardness and color change of enamel white spots lesions before and after application of an infiltrating resin versus casein phospho-peptide amorphous calcium phosphate with sodium fluoride remineralizing agent : An in vitro study / Cai01.09.03.M.Sc.2017.Ma.E Effect of light amplified high intensity LED curing versus conventional LED curing on marginal sealing of direct compound posterior bulk-fill resin composite restorations : An In-vitro study = أ{uئإ٩آ}{uئإءإ} ا{uئإآ٣}{uئإ٩٨}{uئإء٨}{uئإءء}ام {uئإآئ}{uئإإإ}ء {uئإأآ}{uئإ٨إ}{uئإؤئ}ى ا{uئإؤئ}{uئإؤأ}{uئإ٩أ}{uئإ٨إ}{uئإؤ٣}{uئإ٩٤} {uئإإ٣}{uئإؤ٨}{uئإ٨إ}{uئإ٩١}{uئإؤإ} ا{uئإآ٣}{uئإ٩٨}{uئإء٨}{uئإءء}ام ا{uئإؤئ}{uئإأ٠}{uئإإإ}ء {uئإ٩آ}{uئإإ٨}{uئإ٨إ}{uئإ٨آ}ى ا{uئإؤئ}{uئإؤ٨}{uئإأ٠}{uئإ٩٠} {uئإأآ}{uئإإ٠}{uئإئ٠} {uئإء٧}{uئإ٩٨}{uئإإ٢} ا{uئإؤئ}{uئآءؤ}{uئإ٨إ}{uئإإ٣}{uئإآ٨}{uئآئئ}{uئإ٩٤} {uئإؤئ}{uئإإ٠}{uئإء٤}{uئإآ٨}{uئإإإ}ات ا{uئإؤئ}{uئإإ٤}{uئإءإ}{uئإؤآ}{uئإ٩٢}{uئإ٩٤} ا{uئإؤئ}{uئإءإ}ا{uئإ٩٧}{uئإإ٨}{uئإء٠}{uئآئئ}{uئإ٩٤} ا{uئإؤئ}{uئإإ٤}{uئإ٩٢}{uئإ٨إ}{uئإآ٧}{uئإءإ}ة : درا{uئإآ٣}{uئإ٩٤} {uئإإ٣}{uئإأأ}{uئإإ٤}{uئإإ٠}{uئآئئ}{uئإ٩٤} /

Thesis (M.Sc.) - Cairo University - Faculty of Oral and Dental Medicine - Department of Operative Dentistry

This the study was performed to evaluate the effect of the collagen crosslinking abilities of Galla Chinensis Extract (GCE) on the micro shear bond strength durability of self-adhering flowable composite to dentin. M&M: Fifty two extracted human molars were selected, enamel surfaces were flattened.The teeth were randomly divided into two main groups (A) (n=26). (A0) was for self-adhering flowable composite without GCE (control) and (A1) was for self-adhering flowable composite with GCE. Each main group was divided into two subgroups (T) according to time of testing; (T1) after 24 hours, (T2) after three months (n=13). All specimens were stored in artificial saliva. Micro shear bond strength test was conducted immediately after 24 hours and after three months using universal testing machine.The results showed that the highest micro shear bond strength was for GCE group after 24 hours storage and the lowest mean micro shear bond strength for the control group after three months storage. There was a statistically significant difference (p{u2264}0.001) between the GCE groups and the control groups on the mean micro shear bond strength of Fusio{u2122} Liquid Dentin. Conclusion: GCE as a natural cross linking agent could be of positive value on the micro shear bond strength of self-adhering flowable composite and time has no significance on the micro shear bond strength

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