Szivek J A, Magee F P, Hanson T, Hedley A K
Harrington Arthritis Research Center Phoenix, Arizona.
J Invest Surg. 1994 Mar-Apr;7(2):95-110. doi: 10.3109/08941939409015354.
Bone remodeling adjacent to orthopedic implants has been attributed to bone strain changes. Although many animal studies have assessed bone remodeling near implants, the altered bone strains and even the strains in the intact bone prior to implantation have not been mapped extensively. Instead, bone changes are often correlated with implant stiffnesses. In this study, a benchtop loading system was developed using measurements from in vivo strain analysis to simulate physiologic loading of a canine femur. The effect on bone strains of three different stiffness canine hip implants with the same anatomic shape were compared by taking measurements from the proximal greyhound femur during loading. Peak compressive and tensile strains of the order of 200 to 400 microstrain were measured in the intact and implanted femora. The measurements indicate that during simulated in vivo loading, none of the implants substantially alter the normal strain state of the bone. If initial axial strains significantly affect the remodeling response of bone, the similarity of measurements with the different implants in place suggests that the same remodeling response would be expected to both the stiffest and least stiff implant, as has been noted in animal studies adjacent to the intermediate stiffness implant. It also suggests that this implant shape and initial bone implant interface condition can compensate for strain reductions expected near stiff straight-stemmed implants.
骨科植入物附近的骨重塑被认为与骨应变变化有关。尽管许多动物研究评估了植入物附近的骨重塑,但植入前完整骨中的应变变化甚至应变情况尚未得到广泛测绘。相反,骨变化通常与植入物刚度相关。在本研究中,利用体内应变分析的测量结果开发了一种台式加载系统,以模拟犬股骨的生理负荷。通过在加载过程中对灵缇犬近端股骨进行测量,比较了三种具有相同解剖形状但不同刚度的犬髋关节植入物对骨应变的影响。在完整和植入的股骨中测量到的峰值压缩应变和拉伸应变在200至400微应变量级。测量结果表明,在模拟体内加载过程中,没有一种植入物会显著改变骨的正常应变状态。如果初始轴向应变显著影响骨的重塑反应,那么不同植入物在位时测量结果的相似性表明,对于最硬和最软的植入物,预期会有相同的重塑反应,正如在与中等刚度植入物相邻的动物研究中所观察到的那样。这也表明,这种植入物形状和初始骨植入物界面条件可以弥补在硬直柄植入物附近预期的应变降低。