Amr A Mahmoud, Sara M Zayed, Mohamed G Aly, Moustafa N Aboushelib
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摘要

目的:本研究的目的是研究和比较用球状或自调准螺柱(Positioner)附件固位的长种植体和短种植体下颌覆盖义齿周围的应变分布:使用两个完全无牙的下颌模型,模型由环氧树脂制成,种植体等距放置在犬齿区。第一个模型植入两个长种植体,第二个模型植入两个短种植体。每个模型都有两种附着机制。共制作了二十四个相同的下颌覆盖义齿,每个模型分为两组(n = 12)。每个模型有两个子组:球状连接体(n = 6)和定位器连接体(n = 6)。在每个种植体周围准备好的相应部位的环氧树脂上粘结了两个线性应变片,在100N的双侧和单侧垂直载荷下测量微应变。对微应变值数据进行了单因素方差分析、事后配对比较和独立 t 检验(α =.05):结果:在比较球式和定位器式种植体时,定位器式种植体的微应变明显高于球式种植体(P 结论:球式种植体的微应变高于定位器式种植体:与球形连接体相比,定位器连接体在种植体周围引起的应变分布更高,与种植体长度无关。增加种植体长度并没有好处。因此,使用短种植体固定下颌覆盖义齿是一种可行的替代治疗方案。
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Strain Assessment Around Two Short Implants Retaining Mandibular Overdenture with Different Attachment Systems: In- Vitro Study.

Purpose: The purpose of this study was to examine and compare the strain distribution around long and short implant mandibular overdentures retained either by ball or self-aligning stud (Positioner) attachments.

Material and methods: Two completely edentulous mandibular models made of epoxy resin were used with implants placed equidistantly in the canine region. In the first model, two long implants were inserted, while two short implants were inserted in the second model. Two attachment mechanisms were examined for each model. A total of twentyfour identical mandibular overdentures were constructed and divided into two groups for each model (n = 12). Each model had two subgroups: ball attachments (n = 6) and Positioner attachments (n = 6). Two linear strain gauges were bonded to the epoxy at their corresponding prepared sites around each implant, where the microstrain was measured under bilateral and unilateral vertical loads of 100N. One-way ANOVA with post-hoc pairwise comparison and an independent t-test were used to analyze the microstrain value data (α =.05).

Results: When comparing ball and Positioner attachments, the Positioner showed significantly higher microstrain than the ball attachment (P <0.001) for both bilateral and unilateral loading. When long and short implants were compared, no statistically significant difference was found in bilateral loading (P = 0.22) or unilateral loading (P = 0.19; P = 0.16) on both loading and nonloading sides.

Conclusions: A higher strain distribution around implants was induced by the Positioner attachment compared to the ball attachment, regardless of the implant length. Increasing the implant length was not advantageous. Thus, the use of short implants for retaining mandibular overdentures can be a viable alternative treatment option.

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