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In vivo measurements of the triceps surae complex architecture in man: implications for muscle function (see comments)

机译:人体三头肌肱三头肌复杂结构的体内测量:对肌肉功能的影响(请参阅评论)

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1. The objectives of this study were to (1) quantify experimentally in vivo changes in pennation angle, fibre length and muscle thickness in the triceps surae complex in man in response to changes in ankle position and isometric plantarflexion moment and (2) compare changes in the above muscle architectural characteristics occurring in the transition from rest to a given isometric plantarflexion intensity with the estimations of a planimetric muscle model assuming constant thickness and straight muscle fibres. 2. The gastrocnemius medialis (GM), gastrocnemius lateralis (GL) and soleus (SOL) muscles of six males were scanned with ultrasonography at different sites along and across the muscle belly at rest and during maximum voluntary contraction (MVC) trials at ankle angles of -15 deg (dorsiflexed direction), 0 deg (neutral position), +15 deg (plantarflexed direction) and +30 deg. Additional images were taken at 80, 60, 40 and 20% of MVC at an ankle angle of 0 deg. 3. In all three muscles and all scanned sites, as ankle angle increased from -15 to +30 deg, pennation increased (by 6-12 deg, 39-67%, P < 0.01 at rest and 9-16 deg, 29-43%, P < 0.01 during MVC) and fibre length decreased (by 15-28 mm, 32-34%, P < 0.01 at rest and 8-10 mm, 27-30%, P < 0.05 during MVC). Thickness in GL and SOL increased during MVC compared with rest (by 5-7 mm, 36-47%, P < 0.01 in GL and 6-7 mm, 38-47%, P < 0.01 in SOL) while thickness of GM did not differ (P > 0.05) between rest and MVC. 4. At any given ankle angle the model underestimated changes in GL and SOL occurring in the transition from rest to MVC in pennation angle (by 9-12 deg, 24-38%, P < 0.01 in GL and 9-14 deg, 25-28%, P < 0.01 in SOL) and fibre length (by 6-15 mm, 22-39%, P < 0.01 in GL and 6-8 mm, 23-24%, P < 0.01 in SOL). 5. The findings of the study indicate that the mechanical output of muscle as estimated by the model used may be unrealistic due to errors in estimating the changes in muscle architecture during contraction compared with rest.
机译:1.这项研究的目的是(1)对踝关节位置和等距plant屈力矩的变化做出反应的人体三头肌肱三头肌复合体的摆角,纤维长度和肌肉厚度的体内实验变化进行定量,以及(2)比较变化在上述肌肉结构特征中,从静止状态到给定的等角flex屈强度的过渡过程中出现的,而平面肌模型的估计则假定厚度恒定且肌肉直肌。 2.在休息和最大自主收缩试验(MVC)的踝关节角度,对六名男性的腓肠肌(GM),外侧腓肠肌(GL)和比目鱼肌(SOL)进行超声检查,分别在沿腹部和沿腹部的不同部位进行超声检查-15度(背屈方向),0度(中立位置),+ 15度(足底屈曲方向)和+30度。在踝关节角为0度时以MVC的80%,60%,40%和20%拍摄其他图像。 3.在所有三块肌肉和所有扫描部位,当踝角从-15度增加到+30度时,垂垂度增加(增加6-12度,39-67%,静止时P <0.01,9-16度,29-纤维长度减少了43%,P <0.01)和纤维长度减少了(静止时减少了15-28 mm,32-34%,静止时P <0.01,MVC期间减少了8-10 mm,27-30%,P <0.05)。与静止相比,MVC期间GL和SOL的厚度增加(分别增加5-7 mm,36-47%,GL中的P <0.01和SOL中的6-7 mm,38-7%,P <0.01),而GM的厚度休息和MVC之间没有差异(P> 0.05)。 4.在任何给定的踝角处,模型均低估了从静止角度到MVC的垂线角度中GL和SOL的变化(倾斜角度为9-12度,24-38%,GL中P <0.01,而9-14度为25) -28%,SOL中P <0.01)和纤维长度(在GL中为6-15 mm,22-39%,P <0.01,在SOL中为6-8 mm,23-24%,P <0.01)。 5.研究结果表明,由于模型估计的肌肉与静止时相比,在收缩过程中存在错误,因此所用模型估计的肌肉机械输出可能不切实际。

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