College of Biomedical Engineering, Taiyuan University of Technology, Taiyuan, 030024, China.
Sci Rep. 2024 Jan 2;14(1):107. doi: 10.1038/s41598-023-50693-1.
Lateral wedge insole (LWI) is a frequently recommended treatment option for early and midterm stages of medial knee osteoarthritis. However, studies of its effects on the lower limb joints are incomplete and imperfect. The main purpose of this study was to quantitatively analyze the response of intervention of LWI on lower-limb joint kinematics, ground reaction forces (GRFs), and centre of pressure (COP). Gait analysis of 16 healthy subjects was conducted. Three-dimensional motion data and force plate measurements were collected in the control (barefoot) and experimental conditions (wearing a pair of assigned shoes with 0, 7, and 10 mm LWIs). Results showed that the peak knee flexion angle was increased by 3.43°, 3.09°, and 3.27° with 0, 7, and 10 mm LWIs, respectively (p < 0.01). The ankle peak dorsiflexion angle was significantly decreased by 3.79°, 2.19°, and 1.66° with 0, 7, and 10 mm LWIs, respectively (p = 0.02). The internal rotation angle was increased by 2.78°, 3.76°, and 4.58° with 0, 7, and 10 mm LWIs, respectively (p < 0.01). The forefoot with LWIs showed highly significantly smaller inversion, eversion, and adduction angles (all p < 0.01). The 1st peak of the vertical GRF (p = 0.016) also increased significantly by a maximum of 0.06 body weight (BW) with LWIs. These results indicated that biomechanical changes and limitations of lateral wedges insole should be analyzed in more detail, possibly leading to new guidelines for the design and application.
外侧楔形鞋垫(LWI)是治疗内侧膝关节骨关节炎早期和中期的常用治疗选择。然而,关于其对下肢关节影响的研究并不完整和完善。本研究的主要目的是定量分析 LWI 干预对下肢关节运动学、地面反作用力(GRF)和中心压力(COP)的反应。对 16 名健康受试者进行步态分析。在对照(赤脚)和实验条件(穿着一对分配的鞋子,带有 0、7 和 10mm 的 LWI)下分别采集三维运动数据和力板测量数据。结果显示,0、7 和 10mm LWI 时,膝关节峰值屈曲角度分别增加了 3.43°、3.09°和 3.27°(p<0.01)。踝关节峰值背屈角度分别显著降低了 3.79°、2.19°和 1.66°(p=0.02)。内旋角度分别增加了 2.78°、3.76°和 4.58°(p<0.01)。LWI 前足的内翻、外翻和内收角度显著减小(均 p<0.01)。垂直 GRF 的第 1 个峰值(p=0.016)也显著增加,最大增加了 0.06 体重(BW)。这些结果表明,应更详细地分析外侧楔形鞋垫的生物力学变化和限制,可能为其设计和应用提供新的指导方针。