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Implant Augmentation: Adding Bone Cement to Improve the Treatment of Osteoporotic Distal Femur Fractures

机译:植入物增强:添加骨水泥以改善骨质疏松性股骨远端骨折的治疗

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摘要

The increasing problems in the field of osteoporotic fracture fixation results in specialized implants as well as new operation methods, for example, implant augmentation with bone cement. The aim of this study was to determine the biomechanical impact of augmentation in the treatment of osteoporotic distal femur fractures.Seven pairs of osteoporotic fresh frozen distal femora were randomly assigned to either an augmented or nonaugmented group. In both groups, an Orthopaedic Trauma Association 33 A3 fractures was fixed using the locking compression plate distal femur and cannulated and perforated screws. In the augmented group, additionally, 1 mL of polymethylmethacrylate cement was injected through the screw. Prior to mechanical testing, bone mineral density (BMD) and local bone strength were determined. Mechanical testing was performed by cyclic axial loading (100 N to 750 N + 0.05N/cycle) using a servo-hydraulic testing machine.As a result, the BMD as well as the axial stiffness did not significantly differ between the groups. The number of cycles to failure was significantly higher in the augmented group with the BMD as a significant covariate.In conclusion, cement augmentation can significantly improve implant anchorage in plating of osteoporotic distal femur fractures.
机译:骨质疏松性骨折固定领域中日益严重的问题导致了专门的植入物以及新的手术方法,例如用骨水泥增强植入物。本研究的目的是确定增强对骨质疏松远端股骨骨折治疗的生物力学影响。将七对骨质疏松的新鲜冷冻远侧股骨随机分为增强组或非增强组。在两组中,均使用锁定的加压股骨远端股骨以及空心螺钉和穿孔螺钉来固定整形外科协会33 A3骨折。在增强组中,另外,通过螺钉注射了1mL的聚甲基丙烯酸甲酯水泥。在进行机械测试之前,先确定骨矿物质密度(BMD)和局部骨强度。使用伺服液压测试机以循环轴向载荷(100 N至750 N + 0.05N /循环)进行机械测试,结果两组之间的BMD和轴向刚度没有显着差异。增强组的失败周期数显着较高,BMD为显着的协变量。总之,骨水泥增强可以显着改善骨质疏松性股骨远端骨折钢板的植入物锚固。

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