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Influence of Joint Angle on Residual Force Enhancement in Human Plantar Flexors

机译:关节角度对人足屈肌残余力增强的影响

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摘要

Compared to pure isometric contractions, isometric muscle force at a given length is larger when the eccentric contraction is conducted before the isometric contraction. This phenomenon is widely known as residual force enhancement, and has been confirmed consistently in isolated muscle experiments. The purpose of this study was to confirm whether residual force enhancement also occurs in human plantar flexors and to examine its joint angle dependence. Eleven men participated in this study. Isometric joint torque was measured in a Control trial (pure isometric contraction) and Residual force enhancement (RFE) trial (isometric contraction after eccentric contraction) at plantar flexion 0° (Short condition) and dorsiflexion 15° (Long condition). Fascicle length and pennation angle of the medial gastrocnemius were measured simultaneously to evaluate the influence of architectural parameters on isometric joint torque. Isometric joint torque observed in the Short condition was not significantly different between the Control and RFE trials (Control: 42.9 ± 8.0 Nm, RFE: 45.1 ± 8.4 Nm) (p = 0.200). In contrast, significant differences in isometric joint torque were observed in the Long condition between Control and RFE trials (Control: 40.5 ± 9.3 Nm, RFE: 47.1 ± 10.5 Nm) (p = 0.001). Fascicle length and pennation angle were not different between Control and RFE trials in the Short and Long conditions. Isometric joint torque was larger when eccentric contraction was conducted before isometric contraction while architectural differences were not observed, indicating that residual force enhancement occurs in human plantar flexors. However, the influence of residual force enhancement may be limited in dorsiflexed positions because the magnitude of residual force enhancement is considered to be prominent in the descending limb (long muscle length condition) and small in the ascending limb (short muscle length condition) where human plantar flexors operate in plantar flexed positions.
机译:与纯等距收缩相比,在等距收缩之前进行偏心收缩时,给定长度的等距肌肉力更大。这种现象被广泛称为残余力增强,并已在孤立的肌肉实验中得到一致证实。这项研究的目的是确认是否在人的足底屈肌中也会发生残余力的增强,并检查其关节角度的依赖性。十一个人参加了这项研究。在对照试验(纯等距收缩)和残余力增强(RFE)试验(偏心收缩后等距收缩)试验中,在plant屈0°(短状态)和背屈15°(长状态)下测量等距关节扭矩。同时测量腓肠肌内侧的束长度和垂度角度,以评估建筑参数对等距关节扭矩的影响。在“短路”条件下观察到的等距关节扭矩在对照试验和RFE试验之间没有显着差异(对照:42.9±8.0 Nm,RFE:45.1±8.4 Nm)(p = 0.200)。相反,在“对照”和“ RFE”试验的“长”条件下观察到等距关节扭矩存在明显差异(对照:40.5±9.3 Nm,RFE:47.1±10.5 Nm)(p = 0.001)。在短时和长时条件下,对照和RFE试验的束长度和垂垂角没有差异。在等距收缩之前进行偏心收缩时,等距关节扭矩较大,而没有观察到结构差异,这表明在人的flex屈中会出现残余力增强。但是,残余力增强的影响可能在背屈位置受到限制,因为残余力增强的大小在人的下降肢(长肌肉长度状态)中突出,而在上升肢中(短肌肉长度状态)中较小,这被认为是突出的。屈肌在plant屈位工作。

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