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首页> 外文期刊>Journal of Applied Biomechanics >Optimal Pennation Angle of the Primary Ankle Plantar and Dorsiflexors: Variations With Sex, Contraction Intensity, and Limb
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Optimal Pennation Angle of the Primary Ankle Plantar and Dorsiflexors: Variations With Sex, Contraction Intensity, and Limb

机译:主踝足底和背屈的最佳下垂角度:性别,收缩强度和肢体的变化

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摘要

Ultrasonography was used to measure the pen-nation angle of the human tibialis anterior (TA), lateral gastrocnemius (LG), medial gastrocne-mius (MG), and soleus (Sol). The right and left legs of 8 male and 8 female subjects were tested at rest and during maximum voluntary contraction (MVC). Joint angles were chosen to control muscle tendon lengths so that the muscles were near their optimal length within the length-tension relationship. No differences in pennation angle were detected between the right and left legs. Another consistent finding was that the pen-nation angle at MVC was significantly greater than at rest for all muscles tested. Optimal pennation angles for the TA, MG, and Sol were significantly greater for the men than for the women. Optimal pennation angles for the TA, LG, MG, and Sol for the male subjects were 14.3°, 23.7°, 34.6°, and 40.1° respectively, whereas values of 12.1°, 16.3°, 27.3°, and 26.3° were recorded for the female subjects. The results of this study suggest the following: (1) similar values for pennation angle can be used for the right and left TA, LG, MG, and Sol; (2) pennation angle is significantly greater at MVC than at rest for all muscles tested; and (3) sex-specific values for optimal pennation angle should be used when modeling the force-generating potential of the primary muscles responsible for ankle plantar and dorsiflexion.
机译:超声用于测量人胫骨前(TA),外侧腓肠肌(LG),内侧腓肠肌(MG)和比目鱼肌(Sol)的笔直角度。在静止和最大自主收缩(MVC)期间测试了8位男性和8位女性受试者的右腿和左腿。选择关节角度以控制肌腱长度,以使肌肉在长度-张力关系内接近其最佳长度。在右腿和左腿之间未检测到下垂角度的差异。另一个一致的发现是,对于所有测试的肌肉,MVC处的笔直角度均显着大于静止时的笔直角度。男性的TA,MG和Sol的最佳垂线角度明显大于女性。男性受试者的TA,LG,MG和Sol的最佳下垂角分别为14.3°,23.7°,34.6°和40.1°,而记录的最佳下垂角分别为12.1°,16.3°,27.3°和26.3°。女性对象。研究结果表明:(1)左右TA,LG,MG和Sol可以使用相似的摆角值; (2)对于所有测试的肌肉,MVC的垂度角度均明显大于静止状态。 (3)在对负责踝plant和背屈的主要肌肉产生力的潜力进行建模时,应使用针对特定垂度角度的性别特定值。

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