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Bone ingrowth and initial stability of titanium and porous tantalum dental implants: A pilot canine study

机译:钛和多孔钽牙科植入物的骨长入和初始稳定性:犬类试验研究

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PURPOSE:: To investigate if a dental implant system with a midsection covered by 3-dimensionally porous tantalum material would exhibit stability comparable with a traditional threaded titanium alloy implant system and whether bone would grow into the porous section. METHODS:: Three experimental and 3 control implants were placed in the individual mandibles of 8 dogs. Resonance frequency analysis assessed implant stability at 0, 2, 4, 8, and 12 weeks of healing. Histomorphometric and backscattered scanning electron microscopic analyses examined the presence of bone ingrowth into the experimental implant's porous section and bone-to-implant contact along the titanium surfaces of both implants. RESULTS:: Implant stability did not significantly differ during 0 to 12 weeks of healing. Progressive tissue mineralization developed inside porous sections from weeks 2 to 12. Porous implants exhibited a combination of progressive osseointegration along their titanium surfaces and bone ingrowth inside their porous tantalum sections. CONCLUSIONS:: Cortical and apical implant threads, combined with the porous section, were able to stabilize the experimental implant to the same degree as the fully threaded control implant.
机译:目的::研究具有3维多孔钽材料覆盖的中段的牙科植入物系统是否表现出与传统螺纹钛合金植入系统相当的稳定性,以及骨骼是否会长入多孔部分。方法:将3个实验植入物和3个对照植入物放置在8只狗的下颌骨中。共振频率分析评估了愈合0、2、4、8和12周时的植入物稳定性。组织形态计量学和反向散射扫描电子显微镜分析检查了骨向内生长到实验植入物的多孔部分中以及沿两个植入物的钛表面与骨之间的接触。结果:在0至12周的愈合过程中,植入物的稳定性无明显差异。从第2周到第12周,在多孔区域内逐渐发生组织矿化。多孔植入物在其钛表面上表现出渐进的骨整合以及在多孔钽区域内部的骨向内生长。结论:皮质和根尖植入物螺纹,与多孔部分相结合,能够将实验性植入物稳定到与全螺纹对照植入物相同的程度。

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