首页> 外文期刊>The International journal of oral & maxillofacial implants >The Impact of Force Transmission on Narrow-Body Dental Implants Made of Commercially Pure Titanium and Titanium Zirconia Alloy with a Conical Implant-Abutment Connection: An Experimental Pilot Study
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The Impact of Force Transmission on Narrow-Body Dental Implants Made of Commercially Pure Titanium and Titanium Zirconia Alloy with a Conical Implant-Abutment Connection: An Experimental Pilot Study

机译:力传递对由商业纯钛和钛氧化锆合金与锥形种植体-基台连接制成的窄体种植体的影响:一项实验性研究

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Purpose: The purpose of this study was to visualize the mode and impact of force transmission in narrow-diameter implants with different implant-abutment designs and material properties and to quantify the displacement of the abutment. Materials and Methods: Narrow-diameter implants from two manufacturers were examined: Astra 3.0-mm-diameter implants (Astra OsseoSpeed TX; n = 2) and Straumann Bone Level implants with a 3.3-mm diameter made of commercially pure titanium (cpTi) Gr. 4 (n = 2) and 3.3-mm TiZr-alloy (n = 2; Bone Level, Straumann) under incremental force application using synchrotron radiography (absorption and inline x-ray phase-contrast) and tomography. Results: During loading (250 N), Astra 3.0 and Bone Level 3.3-mm implants showed a deformation of the outer implant shoulder of 61.75 to 95 mu m independent of the implant body material; the inner implant diameter showed a deformation of 71.25 to 109.25 mu m. A deformation of the implant shoulder persisted after the removal of the load (range, 42.75 to 104.5 mu m). An angulated intrusion of the abutment (maximum, 140 mu m) into the implant body during load application was demonstrated; this spatial displacement persisted after removal of the load. Conclusion: This study demonstrated a deformation of the implant shoulder and displacement of the abutment during load application in narrow-diameter implants.
机译:目的:本研究的目的是可视化具有不同种植体-基台设计和材料特性的小直径种植体中力传递的模式和影响,并量化基台的位移。材料和方法:检查了两家制造商的小直径植入物:直径为3.0毫米的Astra植入物(Astra OsseoSpeed TX; n = 2)和直径为3.3毫米的Straumann骨水平植入物,由商业纯钛(cpTi)Gr制成。 4个(n = 2)和3.3毫米TiZr合金(n = 2;骨水平,Straumann)在使用同步加速器放射线照相(吸收和X射线在线相衬)和层析成像的增量力作用下进行。结果:在加载(250 N)的过程中,Astra 3.0和Bone Level 3.3毫米植入物显示出61.75至95μm的外植入物肩部变形,与植入物主体材料无关。植入物的内部直径显示出71.25至109.25μm的变形。去除载荷后(42.75至104.5微米),植入物肩部的变形持续存在。演示了在施加载荷时基台有角度地侵入种植体(最大140微米)。去除负载后,这种空间位移仍然存在。结论:这项研究表明在狭窄直径的种植体中施加载荷期间,种植体肩部变形和基台位移。

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