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Numerical simulation of in vivo intraosseous torsional failure of a hollow-screw oral implant

机译:空心螺钉口腔植入物体内骨内扭转破坏的数值模拟

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Background Owing to the complexity and magnitude of functional forces transferred to the bone-implant interface, the mechanical strength of the interface is of great importance. The purpose of this study was to determine the intraosseous torsional shear strength of an osseointegrated oral implant using 3-D finite element (FE) stress analysis implemented by in vivo failure torque data of an implant. Methods A ? 3.5 mm × 12 mm ITI? hollow screw dental implant in a patient was subjected to torque failure test using a custom-made strain-gauged manual torque wrench connected to a data acquisition system. The 3-D FE model of the implant and peri-implant circumstances was constructed. The in vivo strain data was converted to torque units (N.cm) to involve in loading definition of FE analysis. Upon processing of the FE analysis, the shear stress of peri-implant bone was evaluated to assume torsional shear stress strength of the bone-implant interface. Results The in vivo torque failure test yielded 5952 μstrains at custom-made manual torque wrench level and conversion of the strain data resulted in 750 N.cm. FE revealed that highest shear stress value in the trabecular bone, 121 MPa, was located at the first intimate contact with implant. Trabecular bone in contact with external surface of hollow implant body participated shear stress distribution, but not the bone resting inside of the hollow. Conclusion The torsional strength of hollow-screw implants is basically provided by the marginal bone and the hollow part has negligible effect on interfacial shear strength.
机译:背景技术由于传递到骨-植入物界面的功能力的复杂性和大小,界面的机械强度非常重要。这项研究的目的是使用植入物的体内破坏扭矩数据进行的3-D有限元(FE)应力分析,确定骨整合口腔植入物的骨内扭转剪切强度。方法A? 3.5毫米×12毫米ITI?使用连接到数据采集系统的定制应变计手动扭矩扳手,对患者的中空牙种植体进行扭矩破坏测试。构建了植入物和植入物周围情况的3-D FE模型。将体内应变数据转换为扭矩单位(N.cm),以参与有限元分析的载荷定义。在进行有限元分析后,对植入物周围骨的剪切应力进行了评估,以假定骨植入物界面的扭转剪切应力强度。结果体内扭矩失效测试在定制的手动扭矩扳手水平下产生了5952μs应变,应变数据的转换结果为750N.cm。有限元分析表明,小梁骨的最高剪切应力值为121 MPa,位于与植入物的首次紧密接触处。与中空植入物主体外表面接触的小梁骨参与了剪切应力的分布,但不存在于中空内部的骨。结论空心螺钉植入物的抗扭强度基本上由边缘骨提供,而空心部分对界面剪切强度的影响可忽略不计。

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