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肌外肌筋膜力传递对大鼠后肢被动肌肉肌节长度的影响。

Effects of epimuscular myofascial force transmission on sarcomere length of passive muscles in the rat hindlimb.

作者信息

Tijs Chris, van Dieën Jaap H, Maas Huub

机构信息

Department of Human Movement Sciences, Faculty of Behaviour and Movement Sciences, Vrije Universiteit Amsterdam, MOVE Research Institute Amsterdam, The Netherlands.

Department of Human Movement Sciences, Faculty of Behaviour and Movement Sciences, Vrije Universiteit Amsterdam, MOVE Research Institute Amsterdam, The Netherlands

出版信息

Physiol Rep. 2015 Nov;3(11). doi: 10.14814/phy2.12608.

Abstract

Results from imaging studies and finite element models suggest epimuscular myofascial effects on sarcomere lengths in series within muscle fibers. However, experimental evidence is lacking. We evaluated epimuscular myofascial effects on (1) muscle belly, fiber, and mean sarcomere length and (2) sarcomere length distribution within passive fibers of the rat tibialis anterior (TA) and soleus (SO) muscles. Hindlimbs (n = 24) were positioned in predefined knee (55°, 90°, 125°, 160°) and ankle (either 90° or 125°) angles, and fixed in a formaldehyde solution. Varying knee joint angle causes changes in muscle-tendon unit length of SO and TA's synergists, but not of SO and TA. Whole fibers were taken from SO and TA and photographed along their length. Mean sarcomere length was assessed for the entire fiber and for the proximal, intermediate, and distal thirds (fiber segments) separately. Mean sarcomere length of the fiber was not affected by knee angle, neither for SO (mean: 2.44 ± 0.03 μm and 2.19 ± 0.05 μm for ankle angles of 90° and 125°, respectively) nor for TA (mean: 2.33 ± 0.05 μm and 2.51 ± 0.07 μm for ankle angle set to 90° and 125°, respectively). Only for TA, a significant interaction between knee angle and fiber segment was found, indicating changes in the distribution of lengths of in-series sarcomeres. Thus, while epimuscular myofascial force transmission did not cause mean sarcomere length changes within passive SO and TA, it did alter the length distribution of sarcomeres within passive TA.

摘要

影像学研究和有限元模型的结果表明,肌外肌筋膜对肌纤维内串联的肌节长度有影响。然而,缺乏实验证据。我们评估了肌外肌筋膜对(1)肌腹、肌纤维和平均肌节长度,以及(2)大鼠胫骨前肌(TA)和比目鱼肌(SO)被动肌纤维内肌节长度分布的影响。将后肢(n = 24)置于预先设定的膝关节(55°、90°、125°、160°)和踝关节(90°或125°)角度,并固定在甲醛溶液中。膝关节角度的变化会导致SO和TA协同肌的肌腱单位长度发生变化,但不会导致SO和TA的肌腱单位长度发生变化。从SO和TA中取出完整的肌纤维,并沿其长度进行拍照。分别评估整个肌纤维以及近端、中间和远端三分之一(肌纤维段)的平均肌节长度。肌纤维的平均肌节长度不受膝关节角度的影响,无论是SO(踝关节角度为90°和125°时,平均长度分别为2.44±0.03μm和2.19±0.05μm)还是TA(踝关节角度设定为90°和125°时,平均长度分别为2.33±0.05μm和2.51±0.07μm)。仅对于TA,发现膝关节角度与肌纤维段之间存在显著交互作用,表明串联肌节长度分布发生了变化。因此,虽然肌外肌筋膜力传递并未导致被动状态下的SO和TA内平均肌节长度发生变化,但它确实改变了被动状态下TA内肌节的长度分布。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4011/4673637/737611cfddee/phy20003-e12608-f1.jpg

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