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首页> 外文期刊>Journal of orthopaedic trauma >Internal fixation of supracondylar femoral fractures: comparative biomechanical performance of the 95-degree blade plate and two retrograde nails.
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Internal fixation of supracondylar femoral fractures: comparative biomechanical performance of the 95-degree blade plate and two retrograde nails.

机译:con上sup骨骨折的内固定:95度刀片板和两个逆行钉的比较生物力学性能。

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OBJECTIVE: The biomechanical stability of supracondylar femoral fractures fixed with a condylar blade plate (plate), a Green Seligson Henry nail (GSHN), or a new retrograde unreamed supracondylar femoral nail (new nail) based on the AO unreamed femoral nail were compared. DESIGN: A standardized simulated comminuted supracondylar femoral fracture (segmental defect) in fresh frozen paired cadaveric femora was stabilized with one of the implants. The interfragmentary fracture site stiffness in three directions and axial strength of the fixator-bone construct were compared (pairwise). RESULTS: The plate versus the new nail was (a) axially 10 percent as stiff and 50 percent as strong (ultimate strength), (b) as stiff in A/P bending, and (c) five times more stiff in torsion. Varus angle at failure under axial load was significantly greater for the plate than for the new nail. There were no statistical differences in axial stiffness and ultimate strength between the new nail and the GSHN, but the new nail was 50 percent and 30 percent as stiff in A/P bending and torsion, respectively. The magnitude of deformation at failure under axial loading was similar. CONCLUSIONS: In fixation of extraarticular comminuted supracondylar distal femur fractures, results indicate that (a) the new nail provides equal or greater stability than does the plate, except when large torsional loads are anticipated, and (b) the new nail provides stability equal to the GSHN for axial loading and lesser stability against off-axis loads. As is evident in this and other studies, intramedullary implants are less torsionally stiff than are plates. The torsional stiffness of the new nail is expected to be sufficient because it is comparable to many available nails, and low torsional moments are expected for healing femoral supracondylar fractures.
机译:目的:比较以with突刀片(钢板),Green Seligson Henry钉(GSHN)或基于AO未矫正股骨钉的新型逆行无骨上sup股骨钉(新钉)固定的con上con骨骨折的生物力学稳定性。设计:用其中一种植入物稳定新鲜冷冻成对的尸体股骨的标准化模拟粉碎性con上股骨骨折(节段性缺损)。比较(成对)在三个方向上的片段间骨折部位的刚度和固定器-骨结构的轴向强度。结果:钢板与新钉相比,(a)轴向刚度为10%,强度为50%(最终强度),(b)A / P弯曲时为刚度,(c)扭转时刚度为五倍。钢板在轴向载荷下失效时的内翻角明显大于新钉。新钉与GSHN之间的轴向刚度和极限强度没有统计学差异,但新钉的A / P弯曲和扭转刚度分别为50%和30%。轴向载荷下破坏时的变形幅度相似。结论:在固定extra外sup上远端粉碎性股骨远端骨折时,结果表明:(a)新钉提供的稳定性与钢板相同或更高,除非预计会有较大的扭转载荷;(b)新钉提供的稳定性等于GSHN可承受轴向载荷,并具有较小的抗离轴载荷稳定性。从这项研究和其他研究中可以明显看出,髓内植入物的抗扭刚度小于钢板。新指甲的抗扭刚度可望达到足够的水平,因为它可与许多可用的指甲相媲美,而且预期低扭转力矩可用于治疗股骨sup上骨折。

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