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Mechanical behavior of screws in normal and osteoporotic bone.

机译:正常和骨质疏松性骨中螺钉的机械行为。

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摘要

Fracture fixation in severe osteoporotic bone by means of implants that rely on screw anchorage is still a clinical problem. So far, a sufficiently accurate prediction of the holding capacity of screws as a function of local bone morphology has not been obtained. In this study the ultimate pullout loads of screws in the epi-, meta-, and diaphyseal regions of human tibiae were correlated to the cortical thicknesses and cancellous bone mineral densities at the screw axes determined from QCT densitometric data. Stepwise multiple linear regression showed that in regions with cortical thicknesses below 1.5 mm, cancellous density determined the ultimate pullout load (R2 = 0.85, p < 0.001), while in regions with cortices above 1.5 mm, cortical thickness alone significantly influenced the holding capacity of a screw (R2 = 0.90, p < 0.001). The findings of this study provide a basis for a bone morphology-related pre-operative estimation of the holding capacity of screws, which could help to improve their properapplication in osteoporotic bone.
机译:通过依靠螺钉锚固的植入物将严重的骨质疏松性骨骨折固定仍然是临床问题。迄今为止,尚未获得对螺钉的保持能力作为局部骨形态的函数的足够准确的预测。在这项研究中,人胫骨的上,中,和干骨区螺钉的最终拔出载荷与根据QCT密度测量数据确定的螺钉轴上的皮质厚度和松质骨矿物质密度相关。逐步多元线性回归分析显示,在皮质厚度小于1.5 mm的区域中,松质密度决定了最终的拔出载荷(R2 = 0.85,p <0.001),而在皮质厚度大于1.5 mm的区域中,仅皮质厚度会显着影响其保持力。螺丝(R2 = 0.90,p <0.001)。这项研究的发现为骨形态学相关的术前螺钉固定能力的估计提供了基础,这可能有助于改善其在骨质疏松性骨中的正确应用。

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