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Investigating the Effects of Different Constant Compression Forces on Pig Femur Bone During the Process of Spiral Oblique Long Bone Fracture

机译:研究螺旋斜骨骨折过程中不同恒定压缩力对猪股骨骨骨的影响

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Spiral Oblique fractures are known to happen by a torsional force while the bone is under certain compression force. The purpose of this research is to compare the effects of two different, constant compressional forces during the process of spiral oblique fracture of pig femur bone. This experiment was performed by simulating the fracture with a Materials Testing System (MTS). An epoxy at both, the proximal and distal heads of the bone stabilized each bone. The bone will then be placed in the MTS. The different tests performed included combinations testing 500 and 750°N compressional forces, each at the 6°, 12°, and 18° per second torsional rate. Seven bones were tested for each of the torque speeds on each group (sample size, n = 7). The average angle of twist for the slow, average, and fast rates for Group 1 were 0.7590°, 0.8948°, 0.9376°, respectively. The average angle of twist for the slow, average, and fast rates for Group 2 were 1.3213°, 1.2580°, 1.7459°, respectively. The average maximum torque for the slow, average, and fast rates for Group 1 were 129.4258°, 133.6292°, 148.4509°, respectively. The average maximum torque for the slow, average, and fast rates for Group 2 were 123.0230°, 113.7802°, 135.7897°, respectively. The average angle of fracture for the slow, average, and fast rates for Group 1 were 64.1919°, 59.9131°, 66.0148°, respectively. The average angle of fracture for the slow, average, and fast rates for Group 2 were 72.9282°, 69.4060°, 71.1549°, respectively. Overall, the fractures made under 750°N were overall cleaner and with higher angles. The proof given by the comparisons between angle of twist, angle of fracture, and maximum torque offer enough evidence that a higher compression force creates an overall cleaner and stronger fracture over the spiral oblique fractures of pig femur bone.
机译:众所周知,螺旋斜骨折在骨骼处于某些压缩力下发生扭转力。该研究的目的是在猪股骨骨螺旋倾斜骨折过程中比较两种不同恒定压缩力的影响。通过使用材料测试系统(MTS)模拟骨折进行该实验。两者的环氧树脂,骨骼的近端和远端头部稳定每根骨骼。然后将骨头放入MTS中。所执行的不同测试包括测试500和750°N的组合,每个压缩力在6°,12°和每秒18°的每个倾斜速率下。对每组扭矩速度的每个扭矩速度测试七个骨头(样品大小,n = 7)。对于第1组缓慢,平均和快速速率的平均扭曲角度分别为0.7590°,0.8948°,0.9376°。对于第2组缓慢,平均和快速速率的平均扭转角分别为1.3213°,1.2580°,1.7459°。慢速,平均值和基团的快速速率的平均最大扭矩分别为129.4258°,分别为129.4258°,133.6292°,148.4509°。对于第2组缓慢,平均和快速速率的平均最大扭矩分别为123.0230°,113.7802°,113.7802°,135.7897°。第1组缓慢,平均和快速速率的平均裂缝角分别为64.1919°,分别为59.9131°,66.0148°。第2组缓慢,平均和快速速率的平均裂缝角分别为72.9282°,69.4060°,71.1549°。总的来说,在750°N下方制造的裂缝是整体更清洁的,角度更高。通过扭曲角度,裂缝角和最大扭矩之间的比较给出的证据提供了足够的证据表明更高的压缩力在猪股骨骨的螺旋倾斜骨折上产生整体清洁剂和更强的骨折。

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