Milne Lachlan P, Kop Alan M, Kuster Markus S
Department of Orthopaedic Surgery, Royal Perth Hospital, Perth, Western Australia, Australia.
Department of Medical Physics, Royal Perth Hospital, Perth, Western Australia, Australia.
J Arthroplasty. 2014 May;29(5):1043-51. doi: 10.1016/j.arth.2013.11.007. Epub 2013 Nov 19.
Bone ingrowth into uncemented acetabular components requires intimate cup-bone contact and rigid fixation, which can be difficult to achieve in revision hip arthroplasty. This study compares polyaxial compression locking screws with non-locked and cancellous screw constructs for acetabular cup fixation. An acetabular cup modified with screw holes to provide both compression and angular stability was implanted into a bone substitute. Coronal lever out, axial torsion and push-out tests were performed with an Instron testing machine, measuring load versus displacement. Polyaxial locking compression screws significantly improved construct stiffness compared with non-locked or cancellous screws. This increased construct stiffness will likely reduce interfacial micromotion. Further research is required to determine whether this will improve bone ingrowth in vivo and reduce cup failure.
骨长入非骨水泥型髋臼假体需要髋臼与骨紧密接触并牢固固定,而这在髋关节翻修手术中可能难以实现。本研究比较了多轴加压锁定螺钉与非锁定松质骨螺钉结构用于髋臼杯固定的效果。将一个经螺钉孔改良以提供加压和角度稳定性的髋臼杯植入骨替代物中。使用英斯特朗测试机进行冠状面杠杆拔出、轴向扭转和推出试验,测量载荷与位移。与非锁定或松质骨螺钉相比,多轴锁定加压螺钉显著提高了结构刚度。这种增加的结构刚度可能会减少界面微动。需要进一步研究以确定这是否会改善体内骨长入并减少髋臼假体失败。