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Microbial Assessment of Two Different Abutment Designs in Peri-implant Sulcus and Implant Abutment Interface: A Case Control Postloading Study

机译:Peri植入物沟和植入式邻接界面两种不同邻接设计的微生物评估:案例控制回忆研究

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摘要

This study evaluates the microbial colonization in the peri-implant sulci and in implant-abutment interfaces of Laser-Lok implants (BioHorizons) with laser-microgrooved abutments (test group) and machined abutments (control group) 18 months after functional loading Real-time polymerase chain reaction revealed significantly greater total and specific microbial load in both the peri-implant sulcus and implant-abutment interface in the control group (P <= .05) Similarly, there was a significant reduction in the radiographic crestal bone loss in the test group (P <= .05) In total, 14 patients were assessed for clinical and radiographic parameters and microbial evaluation Peptostreptococcus micros and Porphyromonas gingivalis were positively correlated with site-specific plaque scores and bleeding scores, and mean crestal bone loss, respectively Hence, the authors propose using Laser-Lok implants with laser-microgrooved abutments to reduce microbial colonization and consequently preserve the crestal bone levels.
机译:该研究评估Peri-incomant sulci和激光植入物(生物植物)的植入静脉邻接界面的微生物定植,其激光微液的基台(试验组)和机械加工支座(对照组)在功能加载后的实时运作加载后18个月聚合酶链反应在对照组中的Peri-incomant沟和植入邻接界面中显着更大和特异性微生物载荷(P <= 0.05),试验中的射线照相骨骨损失显着降低组(p <= 0.05)总共14名患者评估临床和放射线参数,微生物评估Peptostreptococcus micros和porphyromonas牙龈刺激性与位点特异性斑块分数和出血分数呈正相关,并且平均骨骼损失,因此作者提出使用激光 - 微血液从属植入物使用激光 - 微血液植入物,以减少微生物殖民化并因此保存冠骨水平。

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