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接骨板固定长骨中的应力:螺钉拧紧度和界面滑动的作用。

Stresses in plated long-bones: the role of screw tightness and interface slipping.

作者信息

Beaupré G S, Carter D R, Orr T E, Csongradi J

机构信息

Rehabilitation Research and Development Center, Veterans Administration Medical Center, Palo Alto, California 94304.

出版信息

J Orthop Res. 1988;6(1):39-50. doi: 10.1002/jor.1100060106.

Abstract

Using a three-dimensional finite element model of a plated long bone, we studied the influence of screw tightness, sliding frictional interfaces, and loading magnitude on the stresses within the plated bone. The model incorporated frictional interface elements that allowed stress-free separation under tensile loading to occur between the plate and bone and between the screw heads and the plate. The applied loading stimulated both static preloads created by tightening the screws that secure the plate to the bone and physiologic loads created by activity. Initial screw tightening with plate application created regions of bone hydrostatic compressive stress that may be partly responsible for ischemia under the plate. The inclusion of frictional interfaces resulted in a nonlinear relationship between physiologic loan and bone strain that was dependent on screw tightness. This nonlinear response correlated well with the results of previous in vitro studies showing that slippage between the plate and the bone can occur at physiologic load levels. The results showed that the effect of such slippage can be at least as important as plate material, rigidity, and placement in determining the degree of stress shielding. The results also indicated that previous plated bone models that assumed tight interfaces may have overestimated the extent of mechanical stress shielding.

摘要

我们使用一个带钢板的长骨三维有限元模型,研究了螺钉拧紧程度、滑动摩擦界面和加载大小对钢板固定骨内应力的影响。该模型纳入了摩擦界面单元,使得在拉伸载荷作用下,钢板与骨之间以及螺钉头部与钢板之间能够无应力分离。施加的载荷模拟了通过拧紧将钢板固定到骨上的螺钉产生的静态预载荷以及活动产生的生理载荷。最初应用钢板时拧紧螺钉会产生骨静水压力压缩区域,这可能是造成钢板下局部缺血的部分原因。摩擦界面的存在导致生理载荷与骨应变之间呈非线性关系,这种关系取决于螺钉拧紧程度。这种非线性响应与之前的体外研究结果高度相关,这些研究表明在生理载荷水平下钢板与骨之间可能会发生滑动。结果表明,在确定应力遮挡程度时,这种滑动的影响至少与钢板材料、刚度和放置方式同样重要。结果还表明,之前假设界面紧密的钢板固定骨模型可能高估了机械应力遮挡的程度。

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