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首页> 外文期刊>The International journal of oral & maxillofacial implants >Peri-implant Bone Loss of Tissue-Level and Bone-Level Implants in the Esthetic Zone with Gingival Biotype Analysis
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Peri-implant Bone Loss of Tissue-Level and Bone-Level Implants in the Esthetic Zone with Gingival Biotype Analysis

机译:具有牙龈生物型分析的美学区组织水平和骨水平植入物的Peri植入骨质损失

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Purpose: The esthetic outcome of dental implants can be compromised when some degree of bone loss occurs around the implant. This may particularly affect the tissue-level (TL) design. Therefore, bone-level (BL) design implants may be preferable if a natural emergence profile is important Notwithstanding the implant design, the gingival biotype has been identified as a crucial factor in the stability of crestal bone. The objective of this study was to investigate bone loss in patients with different gingival biotypes at TL and BL implant sites in the esthetic zone. Materials and Methods: In 41 patients, 20 TL and 22 BL implant procedures were carried out. Intraoral radiographs of all of the 42 sites were taken immediately after implant insertion as well as during the follow-up examination. The analysis of bone height was conducted using a computerized technique. The TRAN method was used to determine the gingival biotype. Results: After a mean in situ period of 4.9 years in the TL group, 12 implants with a thick biotype had a mean bone loss of 0.21 mm (SD: 0.43 mm). The eight implants with a thin biotype had a loss of 0.05 mm (SD: 0.47 mm; P = .31). After a mean in situ period of 1.9 years, the 14 BL sites with a thick biotype showed a mean bone change of -0.03 mm (SD: 0.38 mm). In the eight implants with a thin biotype, a change of +0.09 mm (SD: 0.32 mm; P = .84) was noted. Conclusion: Analysis of the obtained results did not reveal a dependency of bone height on implant design or on gingival biotype. However, prior to choosing an implant design, it may nevertheless be beneficial to screen for transparent soft tissues, where the BL design offers a more natural emergence profile. For this purpose, the TRAN method is clearly the fastest and easiest.
机译:目的:当植入物周围发生某种程度的骨质损失时,牙科植入物的美学结果可能会受到损害。这可能特别影响组织级(TL)设计。因此,如果植入式设计是植入式设计,则骨水平(BL)设计植入物可能是优选的,但是,植入物设计,牙龈生物型已经被鉴定为骨骨稳定性的关键因素。本研究的目的是探讨在审美区的TL和BL植入部位的不同牙龈生物型患者中的骨质损失。材料和方法:在41例患者中,进行了20吨和22例BL植入程序。在植入物插入后立即在植入物插入后立即进行所有42位点的内射线照片,以及在随访检查期间。使用计算机化技术进行骨高的分析。 TRAN方法用于确定牙龈生物型。结果:在TL组的平均值为4.9岁后,12个具有厚生物型的12种植入物的平均骨质损失为0.21mm(SD:0.43mm)。具有薄生物型的八个植入物的损失为0.05mm(SD:0.47mm; p = .31)。在原位期为1.9岁后,具有厚浓厚生物型的14个BL位点显示平均骨骼变化-0.03mm(SD:0.38mm)。在含有薄的生物型的八个植入物中,注意到+0.09毫米(SD:0.32mm; p = .84)。结论:分析结果没有揭示骨骼高度对植入物设计或牙龈生物型的依赖性。然而,在选择植入物设计之前,可能有利于屏幕用于透明软组织,其中BL设计提供更自然的出现型材。为此目的,TRAN方法显然是最快和最简单的。

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