Department of Physical Therapy, Yamagata Prefectural University of Health Sciences, 260 Kamiyanagi, Yamagata-city, Yamagata 990-2212, Japan.
Graduate School of Systems Design, Tokyo Metropolitan University, 1-1 Minamiosawa, Hachioji-city, Tokyo 192-0397, Japan.
Foot (Edinb). 2021 Dec;49:101743. doi: 10.1016/j.foot.2020.101743. Epub 2020 Sep 9.
This study was conducted to investigate the effects of restriction of forefoot rocker (FFR) functions by immobilisation of unilateral metatarsophalangeal joints (MPJs) on kinematic and kinetic factors during walking.
Eighteen healthy young adults participated in this study. To immobilise the MPJs of the right leg, an aluminium sole plate (AS) was fixed on the sole of the foot. Kinematic and kinetic data were collected while each subject walked at a comfortable speed with the AS and without.
In the AS condition, the walking speed and contralateral step length were significantly decreased, and an asymmetrical centre of mass (COM) movement was observed. The range of plantarflexion motion and positive work by the ankle joint were decreased markedly during the late stance of the AS limb. In contrast, maximum hip and knee flexion angles in the swing phase of the AS limb and positive work by the bilateral hip joints over the gait cycle were increased.
The results suggested that MPJ immobilisation may result in marked motion limitation of ankle plantarflexion and inhibition of push-off by the ankle joint despite no restrictions on the ankle joint. These changes may interfere with gait speed and a smooth and symmetrical COM shift during walking.
本研究旨在探讨通过固定单侧跖趾关节(MPJ)限制前足跷曲功能对步行时运动学和动力学因素的影响。
18 名健康的年轻成年人参与了这项研究。为了固定右腿的 MPJ,在脚底固定一个铝制鞋底(AS)。当每个受试者以舒适的速度穿着 AS 和不穿 AS 行走时,收集运动学和动力学数据。
在 AS 条件下,行走速度和对侧步长明显降低,观察到不对称的质心(COM)运动。在 AS 肢体的后期站立阶段,踝关节的跖屈运动范围和正向功明显减少。相比之下,AS 肢体摆动阶段的最大髋关节和膝关节屈曲角度以及双侧髋关节在步态周期中的正向功增加。
结果表明,尽管踝关节没有受到限制,但 MPJ 固定可能导致踝关节跖屈运动明显受限和踝关节推离功能抑制。这些变化可能会干扰行走时的步速和 COM 平稳对称的转移。