Choisne Julie, McNally Anthony, Hoch Matthew C, Ringleb Stacie I
Auckland Bioengineering Institute, University of Auckland, Auckland, New Zealand.
Mechanical and Aerospace Engineering, Old Dominion University, Norfolk, VA, USA.
J Biomech. 2019 Jan 3;82:234-243. doi: 10.1016/j.jbiomech.2018.10.033. Epub 2018 Nov 2.
It is clinically challenging to distinguish between ankle and subtalar joints instability in vivo. Understanding the changes in load-displacement at the ankle and subtalar joints after ligament injuries may detect specific changes in joint characteristics that cannot be detected by investigating changes in range of motion alone. The effect of restricting joints end range of motion with ankle braces was already established, but little is known about the effect of an ankle brace on the flexibility of the injured ankle and subtalar joints. Therefore, the purposes of this study were to (1) understand how flexibility is affected at the ankle and subtalar joints after sectioning lateral and intrinsic ligaments during combined sagittal foot position and inversion and during internal rotation and (2) investigate the effect of a semi-rigid ankle brace on the ankle and subtalar joint flexibility. Kinematics and kinetics were collected from nine cadaver feet during inversion through the range of ankle flexion and during internal rotation. Motion was applied with and without a brace on an intact foot and after sequentially sectioning the calcaneofibular ligament (CFL) and the intrinsic ligaments. Segmental flexibility was defined as the slope of the angle-moment curve for each 1 Nm interval. Early flexibility significantly increased at the ankle and subtalar joint after CFL sectioning during inversion. The semi-rigid ankle brace significantly decreased early flexibility at the subtalar joint during inversion and internal rotation for all ligament conditions and at the ankle joint after all ligaments were cut.
在活体中区分踝关节和距下关节不稳在临床上具有挑战性。了解韧带损伤后踝关节和距下关节负荷-位移的变化,可能会发现仅通过研究活动范围变化无法检测到的关节特征的特定变化。使用踝关节支具限制关节终末活动范围的效果已经得到证实,但对于踝关节支具对受伤的踝关节和距下关节灵活性的影响知之甚少。因此,本研究的目的是:(1)了解在矢状位足部位置、内翻以及内旋过程中切断外侧韧带和固有韧带后,踝关节和距下关节的灵活性如何受到影响;(2)研究半刚性踝关节支具对踝关节和距下关节灵活性的影响。在九个尸体足内翻过程中,通过踝关节屈伸范围以及内旋过程收集运动学和动力学数据。在完整足部以及依次切断跟腓韧带(CFL)和固有韧带后,分别在佩戴和不佩戴支具的情况下施加运动。节段灵活性定义为每1 Nm间隔的角度-力矩曲线的斜率。在翻转过程中切断CFL后,踝关节和距下关节的早期灵活性显著增加。对于所有韧带情况,半刚性踝关节支具在翻转和内旋过程中显著降低了距下关节的早期灵活性,在切断所有韧带后,踝关节的早期灵活性也显著降低。