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1.
Braz Oral Res ; 24(4): 399-405, 2010.
Article in English | MEDLINE | ID: mdl-21180959

ABSTRACT

A porous material for bone ingrowth with adequate pore structure and appropriate mechanical properties has long been sought as the ideal bone-implant interface. This study aimed to assess in vivo the influence of three types of porous titanium implant on the new bone ingrowth. The implants were produced by means of a powder metallurgy technique with different porosities and pore sizes: Group 1 = 30 % and 180 µm; Group 2 = 30% and 300 µm; and Group 3 = 40% and 180 µm;. Six rabbits received one implant of each type in the right and left tibiae and were sacrificed 8 weeks after surgery for histological and histomorphometric analyses. Histological analysis confirmed new bone in contact with the implant, formed in direction of pores. Histomorphometric evaluation demonstrated that the new bone formation was statistically significantly lower in the group G1 than in group G3, (P = 0.023). Based on these results, increased porosity and pore size were concluded to have a positive effect on the amount of bone ingrowth.


Subject(s)
Coated Materials, Biocompatible , Osseointegration/physiology , Titanium , Animals , Implants, Experimental , Materials Testing , Microscopy, Electron, Scanning , Osteogenesis/physiology , Particle Size , Porosity , Powders , Rabbits , Surface Properties , Tibia
2.
Braz. oral res ; 24(4): 399-405, Oct.-Dec. 2010. ilus, tab
Article in English | LILACS | ID: lil-569217

ABSTRACT

A porous material for bone ingrowth with adequate pore structure and appropriate mechanical properties has long been sought as the ideal bone-implant interface. This study aimed to assess in vivo the influence of three types of porous titanium implant on the new bone ingrowth. The implants were produced by means of a powder metallurgy technique with different porosities and pore sizes: Group 1 = 30 percent and 180 µm; Group 2 = 30 percent and 300 µm; and Group 3 = 40 percent and 180 µm;. Six rabbits received one implant of each type in the right and left tibiae and were sacrificed 8 weeks after surgery for histological and histomorphometric analyses. Histological analysis confirmed new bone in contact with the implant, formed in direction of pores. Histomorphometric evaluation demonstrated that the new bone formation was statistically significantly lower in the group G1 than in group G3, (P = 0.023). Based on these results, increased porosity and pore size were concluded to have a positive effect on the amount of bone ingrowth.


Subject(s)
Animals , Rabbits , Coated Materials, Biocompatible , Osseointegration/physiology , Titanium , Implants, Experimental , Materials Testing , Microscopy, Electron, Scanning , Osteogenesis/physiology , Particle Size , Porosity , Powders , Surface Properties , Tibia
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