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首页> 外文期刊>Orthopedics >Biomechanical testing of bioabsorbable cannulated screws for slipped capital femoral epiphysis fixation.
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Biomechanical testing of bioabsorbable cannulated screws for slipped capital femoral epiphysis fixation.

机译:可生物吸收的空心螺钉固定股骨骨epi滑行的生物力学测试。

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摘要

This study compared cannulated 4.5-mm bioabsorbable screws made of self-reinforced poly-levolactic acid to cannulated 4.5-mm steel and titanium screws for resistance to shear stress and ability to generate compression in a polyurethane foam model of slipped capital femoral epiphysis fixation. The maximum shear stress resisted by the three screw types was similar (self-reinforced poly-levolactic acid 371 +/- 146 MPa, steel 442 +/- 43 MPa, and titanium 470 +/- 91 MPa). The maximum compression generated by both the self-reinforced poly-levolactic acid screw (68.5 +/- 3.3 N) and the steel screw (63.3 +/- 5.9 N) was greater than that for the titanium screw (3 +/- 1.4 N, P <.05). These data suggest cannulated self-reinforced poly-levolactic acid screws can be used in the treatment of slipped capital femoral epiphysis because of their sufficient biomechanical strength.
机译:这项研究比较了自增强聚叶酸制成的4.5毫米空心生物可吸收螺钉与4.5毫米空心钢和钛螺钉的抗剪切应力能力以及在大腿股骨epi骨固定的聚氨酯泡沫模型中产生压缩的能力。三种螺杆类型所承受的最大剪切应力是相似的(自增强聚叶酸371 +/- 146 MPa,钢442 +/- 43 MPa和钛470 +/- 91 MPa)。自增强聚-左旋乳酸螺钉(68.5 +/- 3.3 N)和钢螺钉(63.3 +/- 5.9 N)所产生的最大压缩均大于钛螺钉(3 +/- 1.4 N) ,P <.05)。这些数据表明,空心的自增强聚左旋乳酸钉由于其足够的生物力学强度而可用于治疗股骨滑脱的骨epi。

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