Head W C, Bauk D J, Emerson R H
University of Texas, Southwestern Medical School, Dallas, USA.
Clin Orthop Relat Res. 1995 Feb(311):85-90.
Modern total hip arthroplasty has been performed using femoral stems manufactured from stainless steel, cobalt-chrome molybdenum alloy (CoCrMb), titanium aluminum vanadium alloy (TiAlV), and, on a limited basis, low-elastic modulus composites. Today, only CoCrMb and TiAlV are used in significant numbers. There is ample theoretical, experimental, and clinical evidence to support Ti-AlV as the material of choice for cementless femoral stems, based on superior mechanical compatibility and biocompatibility. The primary advantage of TiAlV over CoCrMb is a lower modulus of elasticity. This results in decreased stress shielding and subsequent favorable femoral remodeling. This effect is more significant with the smaller stem sizes used in primary surgery but persists even with larger stem sizes used in revision surgery. The second advantage of TiAlV is its biocompatibility. Titanium aluminum vanadium alloy is of relatively low toxicity in concentrations found clinically, and TiAlV is inert in the physiologic environment. With regard to fixation in cementless total hip arthroplasty, TiAlV has been shown to achieve excellent bone ingrowth into porous surfaces. In addition, there is evidence of superior bony ingrowth into TiAlV as compared with CoCrMb. Titanium aluminum vanadium alloy is presently the material of choice to be used in conjunction with hydroxyapatite coating. Prosthetic design, stem diameter, and porous-coating applications play significant roles in bony response regardless of metal composition.
现代全髋关节置换术使用的股骨柄由不锈钢、钴铬钼合金(CoCrMb)、钛铝钒合金(TiAlV)制成,在有限的情况下也使用低弹性模量复合材料。如今,大量使用的只有CoCrMb和TiAlV。基于卓越的机械兼容性和生物兼容性,有充分的理论、实验和临床证据支持将Ti-AlV作为非骨水泥股骨柄的首选材料。TiAlV相对于CoCrMb的主要优势在于其较低的弹性模量。这会减少应力遮挡并随后促进股骨的良好重塑。这种效果在初次手术中使用的较小柄尺寸时更为显著,但即使在翻修手术中使用的较大柄尺寸时也依然存在。TiAlV的第二个优势是其生物兼容性。钛铝钒合金在临床发现的浓度下毒性相对较低,并且TiAlV在生理环境中呈惰性。关于非骨水泥全髋关节置换术中的固定,已证明TiAlV能使骨长入多孔表面。此外,有证据表明与CoCrMb相比,骨长入TiAlV的情况更好。钛铝钒合金目前是与羟基磷灰石涂层结合使用的首选材料。无论金属成分如何,假体设计、柄直径和多孔涂层应用在骨反应中都起着重要作用。