Woods Jason B, Burns Patrick R
University of Pittsburgh Medical Center, Comprehensive Foot and Ankle Center, Roesch-Taylor Medical Building, 2100 Jane Street, Suite 7100 North, Pittsburgh, PA 15203, USA.
Clin Podiatr Med Surg. 2011 Aug;28(4):633-48. doi: 10.1016/j.cpm.2011.06.004.
Tibiotalocalcaneal arthrodesis for the treatment of complex foot and ankle deformities are extremely challenging cases. Technological advances in intramedullary nail fixation have improved the biomechanical properties of available fixation constructs in recent years. Nails designed specifically to accommodate hindfoot anatomy, advancement in the understanding of optimal screw orientation, fixed angle technology, the availability of spiral blade screws, and features designed to achieve compression across the arthrodesis site have provided the foot and ankle surgeon with a greater armamentarium for performing tibiotalocalneal arthrodesis. Although advances may help to improve clinical results, small sample sizes and the low-level evidence of study designs limit the evaluation of how these advances affect clinical outcomes.
用于治疗复杂足踝畸形的胫距跟关节融合术是极具挑战性的病例。近年来,髓内钉固定技术的进步改善了现有固定结构的生物力学性能。专门为适应后足解剖结构设计的髓内钉、对最佳螺钉置入方向理解的进步、固定角度技术、螺旋刀片螺钉的应用以及旨在实现关节融合部位加压的设计特点,为足踝外科医生进行胫距跟关节融合术提供了更多的器械选择。尽管这些进步可能有助于改善临床效果,但样本量小和研究设计证据水平低限制了对这些进步如何影响临床结果的评估。