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首页> 外文期刊>Journal of Biomechanics >Calcium phosphate cement augmentation of cancellous bone screws can compensate for the absence of cortical fixation.
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Calcium phosphate cement augmentation of cancellous bone screws can compensate for the absence of cortical fixation.

机译:松质骨螺钉的磷酸钙骨水泥增强可以弥补皮质骨固定的缺失。

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摘要

An obvious means to improve the fixation of a cancellous bone screw is to augment the surrounding bone with cement. Previous studies have shown that bone augmentation with Calcium Phosphate (CaP) cement significantly improves screw fixation. Nevertheless, quantitative data about the optimal distribution of CaP cement is not available. The present study aims to show the effect of cement distribution on the screw fixation strength for various cortical thicknesses and to determine the conditions at which cement augmentation can compensate for the absence of cortical fixation in osteoporotic bone. In this study, artificial bone materials were used to mimic osteoporotic cancellous bone and cortical bone of varying thickness. These bone constructs were used to test the fixation strength of cancellous bone screws in different cortical thicknesses and different cement augmentation depths. The cement distribution was measured with microCT. The maximum pullout force was measured experimentally. The microCT analysis revealed a pseudo-conic shape distribution of the cement around the screws. While the maximum pullout strength of the screws in the artificial bone only was 30+/-7N, it could increase up to approximately 1000N under optimal conditions. Cement augmentation significantly increased pullout force in all cases. The effect of cortical thickness on pullout force was reduced with increased cement augmentation depth. Indeed, cement augmentation without cortical fixation increased pullout forces over that of screws without cement augmentation but with cortical fixation. Since cement augmentation significantly increased pullout force in all cases, we conclude that the loss of cortical fixation can be compensated by cement augmentation.
机译:改善松质骨螺钉固定的一个显而易见的方法是用水泥增强周围的骨。先前的研究表明,使用磷酸钙(CaP)水泥进行骨质增强可显着改善螺钉固定。然而,尚无有关CaP水泥最佳分布的定量数据。本研究旨在显示在各种皮质厚度下水泥分布对螺钉固定强度的影响,并确定在骨质疏松性骨中水泥增强可以弥补皮质固定不存在的条件。在这项研究中,人造骨材料被用来模拟不同厚度的骨质疏松性松质骨和皮质骨。这些骨结构用于测试不同皮质厚度和不同骨水泥增厚深度的松质骨螺钉的固定强度。用microCT测量水泥分布。通过实验测量最大拉拔力。 microCT分析显示,螺钉周围的水泥呈假圆锥形分布。虽然人造骨中螺钉的最大拔出强度仅为30 +/- 7N,但在最佳条件下,它可以增加到大约1000N。在所有情况下,水泥增强显着增加了拔出力。骨水泥厚度对拔出力的影响随水泥增强深度的增加而减小。确实,没有皮质固定的骨水泥增强比没有骨水泥但骨皮质固定的螺钉增加了拔出力。由于在所有情况下骨水泥填充均显着增加了拔出力,因此我们得出结论,骨水泥固定的损失可以通过骨水泥填充来补偿。

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