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Effect of three different implant diameter on the stress induced on supporting structure bone in implant supported over denture : Finite element study / Osama Ahmed Gaballah ; Supervised Hamdi AboElfotouh , Ahmed Emad Fayyad

By: Contributor(s): Material type: TextTextLanguage: English Publication details: Cairo : Osama Ahmed Gaballah , 2015Description: 150 P. : photographs ; 25cmOther title:
  • تأثير ثلاثه غرسات مختلفة القطر على الاجهاد المتولد على العظم فى الاطقم الفوقيه المدعمة بغرسات [Added title page title]
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Dissertation note: Thesis (M.Sc.) - Cairo University - Faculty of Oral and Dental Medicine - Department of Prosthodontics Summary: The present study was conducted to evaluate the stress patterns induced in implants and bone surrounding implants in mandibular overdenture with three different diameters using three dimensional finite element analysis. Three different implant diameters were used. A computerized tomographic image was obtained. Three dimensional geometrical models were constructed using data from the computerized tomographic image into solid works program. The implants were virtually installed in the molar and canine region with diameter 2.8mm, 3.7 and 4.8mm. The material properties for each material were identified in the program. Vertical and oblique loads were applied for each model. The models were restrained at the inferior border to avoid total body displacement. All models were meshed and analyzed using a three dimensional finite element iterative solving method for stress analysis under vertical and oblique loading. The maximal Von Misses stresses were recorded and computed. The maximum stresses were recorded with 2.8 mm diameter (mini dental implant), while the least stresses were recorded with 4.8 mm diameter. These findings may be attributed to the different implant diameter. It was found that stresses had been increased due to the decrease in implant diameter. The stress values induced in the peri-implant bone due to the oblique load were greater than those induced by the vertical load
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Thesis Thesis قاعة الرسائل الجامعية - الدور الاول المكتبة المركزبة الجديدة - جامعة القاهرة Cai01.09.09.M.Sc.2015.Os.E (Browse shelf(Opens below)) Not for loan 01010110068757000
CD - Rom CD - Rom مخـــزن الرســائل الجـــامعية - البدروم المكتبة المركزبة الجديدة - جامعة القاهرة Cai01.09.09.M.Sc.2015.Os.E (Browse shelf(Opens below)) 68757.CD Not for loan 01020110068757000
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Cai01.09.09.M.Sc.2015.No.M Management of partially edentulous mandible with a pier abutment using two different treatment options / Cai01.09.09.M.Sc.2015.No.T A three dimensional evaluation of the accuracy of "Express XT" vinyl polysiloxane impression material using spray and immersion disinfection techniques with immediate and delayed pouring times : In vitro study / Cai01.09.09.M.Sc.2015.No.T A three dimensional evaluation of the accuracy of "Express XT" vinyl polysiloxane impression material using spray and immersion disinfection techniques with immediate and delayed pouring times : In vitro study / Cai01.09.09.M.Sc.2015.Os.E Effect of three different implant diameter on the stress induced on supporting structure bone in implant supported over denture : Finite element study / Cai01.09.09.M.Sc.2015.Os.E Effect of three different implant diameter on the stress induced on supporting structure bone in implant supported over denture : Finite element study / Cai01.09.09.M.Sc.2015.Ra.M Microtensile bond strength of resin bonded translucent zirconia using different surface treatments / Cai01.09.09.M.Sc.2015.Ra.M Microtensile bond strength of resin bonded translucent zirconia using different surface treatments /

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

The present study was conducted to evaluate the stress patterns induced in implants and bone surrounding implants in mandibular overdenture with three different diameters using three dimensional finite element analysis. Three different implant diameters were used. A computerized tomographic image was obtained. Three dimensional geometrical models were constructed using data from the computerized tomographic image into solid works program. The implants were virtually installed in the molar and canine region with diameter 2.8mm, 3.7 and 4.8mm. The material properties for each material were identified in the program. Vertical and oblique loads were applied for each model. The models were restrained at the inferior border to avoid total body displacement. All models were meshed and analyzed using a three dimensional finite element iterative solving method for stress analysis under vertical and oblique loading. The maximal Von Misses stresses were recorded and computed. The maximum stresses were recorded with 2.8 mm diameter (mini dental implant), while the least stresses were recorded with 4.8 mm diameter. These findings may be attributed to the different implant diameter. It was found that stresses had been increased due to the decrease in implant diameter. The stress values induced in the peri-implant bone due to the oblique load were greater than those induced by the vertical load

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