首页> 外文期刊>Journal of orthopaedics and traumatology: official journal of the Italian Society of Orthopaedics and Traumatology >Short uncemented stems allow greater femoral flexibility and may?reduce peri-prosthetic fracture risk: a dry bone and cadaveric study
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Short uncemented stems allow greater femoral flexibility and may?reduce peri-prosthetic fracture risk: a dry bone and cadaveric study

机译:短而无骨水泥的茎具有更大的股骨弹性,并可以减少假体周围骨折的风险:干骨和尸体研究

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class="Heading">Background class="Para">Short femoral stems for uncemented total hip arthroplasty have been introduced as a safe alternative to traditional longer stem designs. However, there has been little biomechanical examination of the effects of stem length on complications of surgery. This study aims to examine the effect of femoral stem length on torsional resistance to peri-prosthetic fracture. class="Heading">Materials and methods class="Para">We tested 16 synthetic and two paired cadaveric femora. Specimens were implanted and then rapidly rotated until fracture to simulate internal rotation on a planted foot, as might occur during stumbling. 3D planning software and custom-printed 3D cutting guides were used to enhance the accuracy and consistency of our stem insertion technique. class="Heading">Results class="Para">Synthetic femora implanted with short stems fractured at a significantly higher torque (27.1 vs. 24.2?Nm, p?=?0.03) and angle (30.3° vs. 22.3°, p?=?0.002) than those implanted with long stems. Fracture patterns of the two groups were different, but showed remarkable consistency within each group. These characteristic fracture patterns were closely replicated in the pair of cadaveric femora. class="Heading">Conclusions class="Para">This new short-stemmed press-fit femoral component allows more femoral flexibility and confers a higher resistance to peri-prosthetic fracture from torsional forces than long stems.
机译:class =“ Heading”>背景 class =“ Para”>用于未骨水泥全髋关节置换术的股骨短柄已被引入,可以替代传统的长柄设计。但是,几乎没有生物力学检查茎长对手术并发症的影响。本研究旨在探讨股骨柄长度对假体周围骨折抗扭强度的影响。 class =“ Heading”>材料和方法 class =“ Para”>我们测试了16人工和两个成对的尸体股骨。植入标本,然后迅速旋转,直到骨折为止,以模拟脚踩时的内部旋转,这可能会在绊脚时发生。使用3D计划软件和定制打印的3D切割指南来增强我们的茎插入技术的准确性和一致性。 class =“ Heading”>结果 class =“ Para”>合成股骨植入的短茎以明显更高的扭矩骨折(27.1 vs. 24.2?Nm, p ?=?0.03)和角度(30.3°vs. 22.3°, p ?=?0.002),而不是植入长茎的植物。两组的骨折模式不同,但各组之间显示出显着的一致性。这些特征性骨折模式在一对尸体股骨中紧密复制。 class =“ Heading”>结论 class =“ Para”>这种新型的短柄压入式股骨组件可以与长茎相比,股骨具有更大的柔韧性,并能更好地抵抗扭转力引起的假体周围骨折。

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