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Axial and Angled Pullout Strength of Bone Screws in Normal and Osteoporotic Bone Material

机译:正常和骨质疏松骨材料中骨螺钉的轴向和倾斜拉伸强度

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Orthopedic surgery often involves the use of bone screws to stabilize fractures. Screw fixation can be extremely difficult in osteoporotic (OP) bone because of its compromised strength. Pullout strength is commonly used to measure screw fixation strength. In this study, axial and angled screw pullouts (ranging from 0° to 40°) were performed on 0.09 g.cm~(-3), 0.16 g.cm~3 and 0.32 g.cm~(-3) polyurethane (PU) foam. The PU foam was used to model different levels of low density human cancellous bone, including OP bone. Screw pull-out tests were conducted under displacement control at a rate of 0.1 mm.s~(-3). Load and displacement values were recorded; the maximum load during screw pullout was defined as the pullout strength of the screw. Two different titanium-alloy bone screws were used to test for any effect of thread type (i.e. cancellous or cortical) on the screw pull-out strength. Failure of screw fixation was observed from the stripping of the internal screw threads within the PU foam. Compared to the cortical screw, the cancellous bone screw had the highest pullout strength under almost all conditions of pullout angle and PU foam density. For both screws, the pullout strength increased with increasing PU foam density. Results indicate that the PU foam density, rather than the screw angle or thread type, is the most influential factor affecting screw pull-out strength. These findings are important in understanding the behavior of screw fixation and screw failure within an OP bone model.
机译:骨科手术通常涉及使用骨螺钉来稳定骨折。由于其受损强度,螺旋固定在骨质疏松(OP)骨中可能极为困难。拉伸强度通常用于测量螺钉固定强度。在本研究中,在0.09 gm〜(3),0.16g.cm〜3和0.32gm〜(-3)聚氨酯(PU)上进行轴向和成角度的螺钉拉伸(范围为0°至40°)。 ) 泡沫。 PU泡沫用于模拟不同水平的低密度人松质骨,包括OP骨。螺杆拉出试验以0.1mm的速率在位移控制下进行。〜(-3)。记录负载和位移值;螺钉拉出期间的最大负载被定义为螺钉的拉出强度。两种不同的钛合金骨螺钉用于测试螺纹型(即松质或皮质)对螺杆拉出强度的任何影响。从PU泡沫内的内螺纹剥离观察到螺钉固定的失效。与皮质螺杆相比,松质骨螺钉在几乎所有拔出角度和PU泡沫密度的条件下具有最高的拉出强度。对于两个螺钉,拉伸强度随着PU泡沫密度的增加而增加。结果表明,PU泡沫密度,而不是螺纹角度或螺纹型,是影响螺杆拉出强度最具影响力的因素。这些发现对于了解OP骨模型内的螺钉固定和螺杆故障的行为非常重要。

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