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压配型股骨柄的皮质骨粘弹性与固定强度:有限元模型

Cortical bone viscoelasticity and fixation strength of press-fit femoral stems: finite element model.

作者信息

Shultz T R, Blaha J D, Gruen T A, Norman T L

机构信息

National Energy Technology Laboratory, 3610 Collins Ferry Road, P.O. Box 880, MS D06, Morgantown, WV 26507-0880, USA.

出版信息

J Biomech Eng. 2006 Feb;128(1):7-12. doi: 10.1115/1.2133765.

Abstract

Many cementless implant designs rely upon a diaphyseal press-fit in conjunction with a porous coated implant surface to achieve primary or short term fixation, thereby constraining interface micromotion to such a level that bone ingrowth and consequent secondary or long-term fixation, i.e., osseointegration, can occur. Bone viscoelasticity, however, has been found to affect stem primary stability by reducing push-out load. In this investigation, an axisymmetric finite element model of a cylindrical stem and diaphyseal cortical bone section was created in order to parametrically evaluate the effect of bone viscoelasticity on stem push-out while controlling coefficient of friction (mu = 0.15, 0.40, and 1.00) and stem-bone diametral interference (delta = 0.01, 0.05, 0.10, and 0.50 mm). Based on results from a previous study, it was hypothesized that stem-bone interference (i.e., press-fit) would elicit a bone viscoelastic response which would reduce the initial fixation of the stem as measured by push-out load. Results indicate that for all examined combinations of mu and delta, bone viscoelastic behavior reduced the push-out load by a range of 2.6-82.6% due to stress relaxation of the bone. It was found that the push-out load increased with mu for each value of delta, but minimal increases in the push-out load (2.9-4.9%) were observed as delta was increased beyond 0.10 mm. Within the range of variables reported for this study, it was concluded that bone viscoelastic behavior, namely stress relaxation, has an asymptotic affect on stem contact pressure, which reduces stem push-out load. It was also found that higher levels of coefficient of friction are beneficial to primary fixation, and that an interference "threshold" exists beyond which no additional gains in push-out load are achieved.

摘要

许多非骨水泥型植入物设计依靠骨干压配配合多孔涂层植入物表面来实现初期或短期固定,从而将界面微动限制在一定水平,使骨长入以及随之而来的二期或长期固定(即骨整合)能够发生。然而,已发现骨的粘弹性会通过降低推出载荷来影响柄的初期稳定性。在本研究中,创建了一个圆柱形柄和骨干皮质骨段的轴对称有限元模型,以便在控制摩擦系数(μ = 0.15、0.40和1.00)和柄 - 骨直径干涉(δ = 0.01、0.05、0.10和0.50 mm)的情况下,参数化评估骨粘弹性对柄推出的影响。基于先前一项研究的结果,推测柄 - 骨干涉(即压配)会引发骨粘弹性反应,这会降低以推出载荷衡量的柄的初始固定。结果表明,对于所有检查的μ和δ组合,由于骨的应力松弛,骨粘弹性行为使推出载荷降低了2.6 - 82.6%。发现对于每个δ值,推出载荷随μ增加,但当δ增加超过0.10 mm时,推出载荷的增加最小(2.9 - 4.9%)。在本研究报告的变量范围内,得出结论:骨粘弹性行为,即应力松弛,对柄接触压力有渐近影响,这会降低柄的推出载荷。还发现较高的摩擦系数水平有利于初期固定,并且存在一个干涉“阈值”,超过该阈值推出载荷不会有额外增加。

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