Gu Yaodong, Lu Yong, Mei Qichang, Li Jianshe, Ren James
Faculty of Sport Science, Ningbo University, Zhejiang, PR China.
Department of Orthopedic, Ningbo First Hospital, Zhejiang, PR China.
Hum Mov Sci. 2014 Aug;36:46-57. doi: 10.1016/j.humov.2014.04.008. Epub 2014 Jun 12.
Unstable sole construction can change biomechanics of lower extremity as highlighted by some previous studies, which could potentially help developing special training or rehabilitation schemes. In this study, unstable elements are fixed in heel and forefoot zone to exert unstable perturbations, and the position changes (medial, neutral and lateral) of unstable elements in forefoot coronal plane are adjusted to analyze changes of lower extremity kinematics and muscle activities. Twenty-two healthy male subjects participated in the test, walking with control shoes and experimental shoes randomly under self-selected speed. Kinematics and surface electromyography measurements were carried out simultaneously. It is found that experimental shoes can lead to the reduction of knee abduction and internal rotation and hip internal rotation, with p<.05. Ankle inversion and internal rotation amplitude were also reduced, which are associated with significantly increased activation levels of muscles (TA-tibialis anterior, PL-peroneus longus, LG-lateral gastrocnemius) in order to compensate perturbations. It is suggested that a training equipment incorporating unstable elements would enhance postural control by adjusting lower extremity kinematics and reorganizing muscle activity. More research can be conducted to testify the feasibility of unstable shoes construction on human postural control and gait, even guide training regime design, injury prevention and rehabilitation.
一些先前的研究强调,不稳定的鞋底结构会改变下肢的生物力学,这可能有助于制定特殊的训练或康复方案。在本研究中,不稳定元件固定在足跟和前足区域以施加不稳定扰动,并调整前足冠状面中不稳定元件的位置变化(内侧、中立和外侧),以分析下肢运动学和肌肉活动的变化。22名健康男性受试者参与了测试,以自选速度随机穿着对照鞋和实验鞋行走。同时进行运动学和表面肌电图测量。结果发现,实验鞋可导致膝关节外展和内旋以及髋关节内旋减少,p<0.05。踝关节内翻和内旋幅度也减小,这与肌肉(TA-胫骨前肌、PL-腓骨长肌、LG-外侧腓肠肌)激活水平显著增加有关,以补偿扰动。建议一种包含不稳定元件的训练设备将通过调整下肢运动学和重新组织肌肉活动来增强姿势控制。可以进行更多研究来验证不稳定鞋结构对人体姿势控制和步态的可行性,甚至指导训练方案设计、预防损伤和康复。