Sangeorzan Adam, Sangeorzan Bruce
Department of Orthopaedics and Sports Medicine, Harborview Medical Center, University of Washington, Box 359798, 325 9th Avenue, Seattle, WA 98104, USA.
Department of Orthopaedics and Sports Medicine, University of Washington, Seattle, WA, USA.
Foot Ankle Clin. 2018 Sep;23(3):341-352. doi: 10.1016/j.fcl.2018.04.002. Epub 2018 Jul 3.
Subtalar joint biomechanics are primarily driven by the shape of the articulations with contributions from the surrounding soft tissues. The joint motion occurs about a single axis oriented medially and superiorly. Joint contact forces change during different stages of gait and are affected by hindfoot alignment and traumatic alterations to their normal anatomy. A valgus subtalar joint axis is likely a contributing, and perhaps primary, risk factor for progression to adult acquired flat foot. The subtalar joint axis also contributes to the clinical picture of a cavus foot and a special subset of patients with dynamic varus.
距下关节生物力学主要由关节面形状驱动,周围软组织也有一定作用。关节运动围绕单一的向内上方的轴进行。在步态的不同阶段,关节接触力会发生变化,并受到后足对线以及正常解剖结构创伤性改变的影响。距下关节外翻轴可能是成人获得性平足进展的一个促成因素,甚至可能是主要危险因素。距下关节轴也与高弓足的临床表现以及动态内翻的特殊患者亚群有关。