Department of Physical Therapy, Marquette University, Cramer Hall, Marquette University, 604 N. 16th St. 004B, Milwaukee, Wisconsin, 53233.
J Orthop Res. 2019 Oct;37(10):2231-2240. doi: 10.1002/jor.24394. Epub 2019 Jul 1.
Multi-segment foot models (MFMs) are becoming a common tool in musculoskeletal research on the ankle-foot complex. The purpose of this study was to compare ankle joint kinematics as well as ligament and muscle strains that result from MFM with a different number of segments during vertical hopping. Ten participants were recruited and performed double-limb vertical hops. Marker positions and ground reaction forces were collected. Two-segment (2MFM), three-segment (3MFM), and five-segment MFM (5MFM) were used to calculate ankle kinematics and the strains of the anterior talofibular and calcaneofibular ligaments and of the soleus and gastrocnemius muscles. Ranges of motion and peak strains were analyzed with Kruskal-Wallis and post hoc tests, whereas the time-series of the ankle kinematics and ligament and muscle strains were analyzed with statistical parametric mapping. There were significant main effects for MFM in the talocrural joint range of motion and peak strains of ligaments and muscles. In addition, there were significant main effects for MFM in time-series data of the talocrural joint angle as well as for ligament and muscle strains. In all cases, the post hoc analyses showed that the 2MFM consistently overestimated the range of motion and tissue strains compared to the 3MFM and 5MFM, while 3MFM and 5MFM did not differ from each other in the most variables. This study showed that the number of segments in MFM significantly affects the biomechanical estimates of joint kinematics and tissue strains during hopping. Clinical significance: MFM that combine all foot structures beyond the talus into one segment likely overestimate ankle joint biomechanics. © 2019 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 37:2231-2240, 2019.
多段足模型(MFMs)在踝关节-足复合体的肌肉骨骼研究中已成为一种常用工具。本研究的目的是比较在垂直跳跃过程中,不同段数的 MFM 对踝关节运动学以及韧带和肌肉应变的影响。招募了 10 名参与者进行双腿垂直跳跃。采集了标记点位置和地面反作用力。使用二分段(2MFM)、三分段(3MFM)和五分段 MFM(5MFM)计算踝关节运动学以及距腓前韧带和跟腓韧带以及比目鱼肌和腓肠肌的应变。使用 Kruskal-Wallis 和事后检验分析运动范围和峰值应变,而踝关节运动学和韧带及肌肉应变的时间序列则使用统计参数映射进行分析。MFM 在距下关节运动范围和韧带及肌肉应变的峰值方面存在显著的主效应。此外,MFM 在距下关节角度以及韧带和肌肉应变的时间序列数据方面也存在显著的主效应。在所有情况下,事后分析表明,2MFM 始终比 3MFM 和 5MFM 高估运动范围和组织应变,而 3MFM 和 5MFM 在大多数变量上没有差异。本研究表明,MFM 中的段数显著影响跳跃过程中关节运动学和组织应变的生物力学估计。临床意义:将距骨以外的所有足部结构组合成一个段的 MFM 可能高估踝关节的生物力学特性。