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股骨头材料对股骨头与耳轴撞击运动及锥度的影响。

Effect of femoral head material on head-to-trunnion impaction motion and taper.

作者信息

Grosso Matthew J, Choo Kevin J, Rajaravivarma Raga, Hozack William

机构信息

Adult Reconstruction, Rothman Orthopedic Institute at Thomas Jefferson University, Philadelphia, Pennsylvania, USA.

Advanced Technology, Stryker Orthopedics, Mahwah, New Jersey, USA.

出版信息

J Orthop Res. 2022 Feb;40(2):380-386. doi: 10.1002/jor.25038. Epub 2021 Mar 29.

Abstract

The purpose of this study was to evaluate the effect of femoral head material on the impaction force, relative motion, and stability of the trunnion. There were three groups with different head materials (n = 5 per group)-CoCr Group: 36 mm CoCr heads, Ceramic Group: 36 mm ceramic heads, Ceramic + Sleeve Group: 36 mm ceramic heads with a titanium sleeve-that were all impacted twice and disengaged onto titanium alloy (Ti6al4V) trunnions in in vitro conditions. A high-speed camera system was utilized to characterize relative displacement behavior of the head-trunnion junction motion. The first impact force of Ceramic + Sleeve Group (14,241    SD, 935) was significantly lower than the first impact force in Ceramic Group (14,961 N, SD = 184). Ceramic + Sleeve Group had a lower magnitude bounce-back displacement following the first impact (17.7 μm, SD = 11), p < 0.05) compared to CoCr Group (298.8 μm, SD = 84) and Group 2 (196.5 μm, SD = 31). Ceramic + Sleeve Group sat further on the trunnion (cumulative final displacement, 366.8 μm, SD = 71, p < 0.001) compared to CoCr Group (142.5 μm, SD = 41.8) and Ceramic Group (183.8 μm, SD = 30). Ceramic + Sleeve Group demonstrated two distinct disengagement patterns-(a) the sleeve disengaged from the trunnion (pull-off force 6810 N), and (b) the femoral head disengaged from the sleeve (pull-off force 18,620 N), with large fluctuations in pull-off force. The presence of a titanium sleeve with a ceramic head resulted in significant differences in impaction force on the trunnion, motion and displacement, and unique mechanisms for disengagement. Further investigation is required to determine potential clinical impact.

摘要

本研究的目的是评估股骨头材料对耳轴的撞击力、相对运动和稳定性的影响。共有三组采用不同的股骨头材料(每组n = 5)——钴铬合金组:36毫米钴铬合金股骨头;陶瓷组:36毫米陶瓷股骨头;陶瓷+套筒组:带有钛套筒的36毫米陶瓷股骨头——所有样本在体外条件下均受到两次撞击,并与钛合金(Ti6al4V)耳轴分离。利用高速摄像系统来表征股骨头-耳轴连接处运动的相对位移行为。陶瓷+套筒组的首次撞击力(14241 N,标准差935)显著低于陶瓷组的首次撞击力(14961 N,标准差 = 184)。与钴铬合金组(反弹位移298.8μm,标准差 = 84)和第二组(196.5μm,标准差 = 31)相比,陶瓷+套筒组在首次撞击后的反弹位移幅度更低(17.7μm,标准差 = 11,p < 0.05)。与钴铬合金组(累计最终位移142.5μm,标准差 = 41.8)和陶瓷组(183.8μm,标准差 = 30)相比,陶瓷+套筒组在耳轴上的位置更深(累计最终位移366.8μm,标准差 = 71,p < 0.001)。陶瓷+套筒组表现出两种不同的分离模式——(a)套筒与耳轴分离(分离力6810 N),以及(b)股骨头与套筒分离(分离力18620 N),分离力波动较大。带有陶瓷股骨头的钛套筒的存在导致耳轴上的撞击力、运动和位移存在显著差异,以及独特的分离机制。需要进一步研究以确定其潜在的临床影响。

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