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不同踝关节位置对等长跖屈时内侧腓肠肌肌纤维应变的影响。

Effect of different ankle joint positions on medial gastrocnemius muscle fiber strains during isometric plantarflexion.

机构信息

Physics, San Diego State University, San Diego, CA, USA.

Muscle Imaging and Modeling Lab, Dept. of Radiology, UC San Diego, 8939 Villa La Jolla, San Diego, CA, 92121, USA.

出版信息

Sci Rep. 2023 Sep 11;13(1):14986. doi: 10.1038/s41598-023-41127-z.

Abstract

Muscle force production is influenced by muscle fiber and aponeurosis architecture. This prospective cohort study utilizes special MR imaging sequences to examine the structure-function in-vivo in the Medial Gastrocnemius (MG) at three-ankle angles (dorsiflexion, plantar flexion-low and high) and two sub-maximal levels of maximum voluntary contraction (25% and 50%MVC). The study was performed on 6 young male participants. Muscle fiber and aponeurosis strain, fiber strain normalized to force, fiber length and pennation angle (at rest and peak contraction) were analyzed for statistical differences between ankle positions and %MVC. A two-way repeated measures ANOVA and post hoc Bonferroni-adjusted tests were conducted for normal data. A related samples test with Friedman's 2-way ANOVA by ranks with corrections for multiple comparisons was conducted for non-normal data. The dorsiflexed ankle position generated significantly higher force with lower fiber strain than the plantarflexed positions. Sarcomere length extracted from muscle fiber length at each ankle angle was used to track the location on the Force-Length curve and showed the MG operates on the curve's ascending limb. Muscle force changes predicted from the F-L curve going from dorsi- to plantarflexion was less than that experimentally observed suggesting other determinants of force changes with ankle position.

摘要

肌肉力量的产生受肌肉纤维和腱膜结构的影响。本前瞻性队列研究利用特殊的磁共振成像序列,在三个踝关节角度(背屈、跖屈低和高)和两个最大随意收缩的亚最大水平(25%和 50%MVC)检查内侧腓肠肌(MG)的结构-功能的体内情况。该研究在 6 名年轻男性参与者中进行。在统计学上比较了踝关节位置和 %MVC 之间的肌肉纤维和腱膜应变、纤维应变与力的归一化、纤维长度和羽毛角(在休息和最大收缩时)。对正态数据进行了双向重复测量方差分析和事后 Bonferroni 调整检验。对非正态数据进行了相关样本检验,采用弗里德曼的 2 路方差分析等级和校正多重比较。背屈踝关节位置产生的力比跖屈位置更高,纤维应变更低。从每个踝关节角度的肌肉纤维长度中提取的肌节长度用于跟踪力-长度曲线的位置,并显示 MG 在曲线的上升支上运行。从 F-L 曲线从背屈到跖屈的力变化预测值小于实验观察到的力变化值,这表明其他因素决定了踝关节位置的力变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/366b/10495375/fe751661085b/41598_2023_41127_Fig1_HTML.jpg

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