Institute of Biomechanics, TUHH Hamburg University of Technology, Hamburg, Germany.
Schön Klinik Hamburg Eilbek, Hamburg, Germany.
J Orthop Res. 2023 Jun;41(6):1283-1290. doi: 10.1002/jor.25481. Epub 2022 Nov 23.
Aseptic loosening is one of the major reasons for re-revisions of cementless revision stems. Insufficient primary stability is associated with bone characteristics and the surgical process. This study aimed to investigate how femur morphology and preparation methods influence the primary stability of revision stems. The Femur morphology was described by the upper femoral curvature (UFC) and an individualized Dorr type classification based on the ratio between the canal-to-calcar ratio (CCR*) and the cortical index (CI*) introduced as the cortical-canal shape (CCS). Manual and powered reaming in combination with helical and straight reamers were used to prepare the bone cavity of 10 cadaveric human femur pairs. Forces during stem impaction were recorded (Reclaim, Depuy Synthes). Micromotion at the bone-implant interface during cyclic axial loading and torsional load to failure was determined. The CCS and impaction forces (R = 0.817, p < 0.001) or torsional strength (R = 0.577, p < 0.001) are inversely related. CCS did not correlate with micromotion during axial loading (R = 0.001, p > 0.999), but proximal femoral curvature did (R = 0.462, p = 0.015). Powered reaming and straight reamers led to an improved torsional strength (both: p = 0.043). The Individualized Dorr classification CCS and UFC allows a good estimation of the primary stability of revision stems. For severely curved Dorr type-C femurs, an alternative anchorage method should be considered clinically.
无菌性松动是导致非骨水泥翻修柄再次翻修的主要原因之一。初次稳定性不足与骨特征和手术过程有关。本研究旨在探讨股骨形态和准备方法如何影响翻修柄的初次稳定性。股骨形态通过股骨上段曲率(UFC)和基于管腔-骨皮质比(CCR*)与皮质指数(CI*)比值的个体化 Dorr 分型来描述,该比值被引入作为皮质-管腔形状(CCS)。使用手动和动力扩髓以及螺旋和直扩髓器来准备 10 对人体股骨尸体的骨腔。记录柄压入过程中的力(Reclaim,Depuy Synthes)。在轴向循环加载和扭转载荷至失效过程中,测量骨-植入物界面处的微动。CCS 和压入力(R = 0.817,p < 0.001)或扭转强度(R = 0.577,p < 0.001)呈负相关。CCS 与轴向加载时的微动无相关性(R = 0.001,p > 0.999),但股骨上段曲率有相关性(R = 0.462,p = 0.015)。动力扩髓和直扩髓器可提高扭转强度(两者均为:p = 0.043)。个体化 Dorr 分型 CCS 和 UFC 可很好地估计翻修柄的初次稳定性。对于严重弯曲的 Dorr 型-C 股骨,临床上应考虑替代锚固方法。