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Influence of Screw Length and Bone Thickness on the Stability of Temporary Implants

机译:螺钉长度和骨厚度对临时种植体稳定性的影响

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摘要

The purpose of this work was to study the influence of screw length and bone thickness on the stability of temporary implants. A total of 96 self-drilling temporary screws with two different lengths were inserted into polyurethane blocks (n = 66), bovine femurs (n = 18) and rabbit tibia (n = 12) with different cortical thicknesses (1 to 8 mm). Screws insertion in polyurethane blocks was assisted by a universal testing machine, torque peaks were collected by a digital torquemeter and bone thickness was monitored by micro-CT. The results showed that the insertion torque was significantly increased with the thickness of cortical bone from polyurethane (p < 0.0001), bovine (p = 0.0035) and rabbit (p < 0.05) sources. Cancellous bone improved significantly the mechanical implant stability. Insertion torque and insertion strength was successfully moduled by equations, based on the cortical/cancellous bone behavior. Based on the results, insertion torque and bone strength can be estimate in order to prevent failure of the cortical layer during temporary screw placement. The stability provided by a cortical thickness of 2 or 1 mm coupled to cancellous bone was deemed sufficient for temporary implants stability.
机译:这项工作的目的是研究螺钉长度和骨厚度对临时植入物稳定性的影响。将总共​​两种不同长度的96个自钻式临时螺钉插入到具有不同皮质厚度(1至8 mm)的聚氨酯股骨(n = 66),牛股骨(n = 18)和兔胫骨(n = 12)中。用通用测试仪辅助将螺钉插入聚氨酯块中,通过数字扭矩计收集扭矩峰值,并通过micro-CT监测骨厚度。结果表明,插入扭矩随着聚氨酯(p <0.0001),牛(p = 0.0035)和兔(p <0.05)来源的皮质骨厚度的增加而显着增加。松质骨显着改善了机械植入物的稳定性。基于皮质/松质骨行为,通过公式成功地将插入扭矩和插入强度进行了模块化。根据结果​​,可以估算出插入扭矩和骨强度,以防止在临时螺钉放置过程中皮质层破裂。耦合至松质骨的2或1 mm皮质厚度提供的稳定性被认为足以满足临时植入物的稳定性。

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