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首页> 外文期刊>Spine >Cement augmentation of vertebral screws enhances the interface strength between interbody device and vertebral body.
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Cement augmentation of vertebral screws enhances the interface strength between interbody device and vertebral body.

机译:椎骨螺钉的水泥增强增强了椎间融合器与椎体之间的界面强度。

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STUDY DESIGN: An in vitro cadaveric study comparing cage-vertebra interface strengths for 3 different screw-cement configurations. OBJECTIVES: To determine the effects of cement augmentation of pedicle screws on cage-vertebra interface failure properties for 2 interbody device shapes (elliptical or cloverleaf); and to compare between pedicle and anterior vertebral body screws with cement augmentation. SUMMARY OF BACKGROUND DATA: Pedicle or anterior screw fixation is commonly used with interbody device fixation. Cement has recently been shown to augment screw fixation in the osteoporotic spine by improving the screw-bone interface strength. The effect of cement augmentation of pedicle or anterior screws on cage-vertebra interface properties has not been previously studied or compared. METHODS: An elliptical or a cloverleaf-shaped indentor covering 40% of the endplate was axially compressed against the superior endplate of 48 thoracolumbar vertebrae. Each vertebra had polymethylmethacrylate cement augmentation of 1) anterior screws, 2) pedicle screws, or 3) pedicle screws without cement. Compressive load was applied through a mechanism that allowed unconstrained rotation of the indentors. RESULTS: Cement augmentation of pedicle screws resulted in significantly higher failure loads (54%) and failure strength (69%) for both shaped indentors when compared with uncemented pedicle screws. There was no significant difference in failure load and failure strength between pedicle and anterior screws with cement augmentation. Indentor shape was not a significant factor on failure load or failure strength. CONCLUSIONS: Cage-vertebra interface properties were improved when cement was used to augment vertebral and pedicle screws. Cement augmentation of pedicle or anterior screws may reduce interbody device subsidence.
机译:研究设计:一项体外尸体研究,比较了3种不同的螺丝水泥结构的笼-椎骨界面强度。目的:确定椎弓根螺钉水泥固结对两种椎体间装置形状(椭圆形或苜蓿叶)的笼-椎骨界面破坏特性的影响;并比较椎弓根螺钉和椎体前螺钉与骨水泥增强术的比较。背景技术摘要:椎弓根或前路螺钉固定常与椎间设备固定一起使用。最近显示,水泥可通过改善螺钉-骨界面强度来增强骨质疏松性脊柱的螺钉固定。先前尚未研究或比较椎弓根或前螺钉的水泥增强对笼-椎界面特性的影响。方法:将覆盖40%终板的椭圆形或苜蓿叶形压头轴向压在48个胸腰椎的上终板上。每个椎骨都有1)前螺钉,2)椎弓根螺钉或3)无水泥的椎弓根螺钉。通过允许压头无限制旋转的机制施加压缩载荷。结果:与未骨水泥椎弓根螺钉相比,椎弓根螺钉的水泥填充导致两个成形压头的破坏载荷(54%)和破坏强度(69%)明显更高。椎弓根螺钉与前路螺钉结合骨水泥加固的失败负荷和失败强度没有显着差异。压头形状不是破坏载荷或破坏强度的重要因素。结论:使用水泥增强椎弓根螺钉时,笼-椎界面特性得到改善。椎弓根或前螺钉的水泥增强可减少椎间装置的沉陷。

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