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痉挛性汉-威斯塔大鼠小腿肌肉长度-力特性的肌肉特异性变化。

Muscle-specific changes in length-force characteristics of the calf muscles in the spastic Han-Wistar rat.

作者信息

Olesen Annesofie T, Jensen Bente R, Uhlendorf Toni L, Cohen Randy W, Baan Guus C, Maas Huub

机构信息

Department of Nutrition, Exercise and Sports, Faculty of Science, University of Copenhagen, Copenhagen, Denmark; MOVE Research Institute Amsterdam, Faculty of Human Movement Sciences, VU University, Amsterdam, The Netherlands; Institute of Sports Medicine Copenhagen, Bispebjerg Hospital, Copenhagen, Denmark; and.

Department of Nutrition, Exercise and Sports, Faculty of Science, University of Copenhagen, Copenhagen, Denmark;

出版信息

J Appl Physiol (1985). 2014 Nov 1;117(9):989-97. doi: 10.1152/japplphysiol.00587.2014. Epub 2014 Sep 4.

Abstract

The purpose of the present study was to investigate muscle mechanical properties and mechanical interaction between muscles in the lower hindlimb of the spastic mutant rat. Length-force characteristics of gastrocnemius (GA), soleus (SO), and plantaris (PL) were assessed in anesthetized spastic and normally developed Han-Wistar rats. In addition, the extent of epimuscular myofascial force transmission between synergistic GA, SO, and PL, as well as between the calf muscles and antagonistic tibialis anterior (TA), was investigated. Active length-force curves of spastic GA and PL were narrower with a reduced maximal active force. In contrast, active length-force characteristics of spastic SO were similar to those of controls. In reference position (90° ankle and knee angle), higher resistance to ankle dorsiflexion and increased passive stiffness was found for the spastic calf muscle group. At optimum length, passive stiffness and passive force of spastic GA were decreased, whereas those of spastic SO were increased. No mechanical interaction between the calf muscles and TA was found. As GA was lengthened, force from SO and PL declined despite a constant muscle-tendon unit length of SO and PL. However, the extent of this interaction was not different in spastic rats. In conclusion, the effects of spasticity on length-force characteristics were muscle specific. The changes observed for GA and PL muscles are consistent with the changes in limb mechanics reported for human patients. Our results indicate that altered mechanics in spastic rats cannot be attributed to differences in mechanical interaction, but originate from individual muscular structures.

摘要

本研究的目的是调查痉挛性突变大鼠后肢下部肌肉的力学特性以及肌肉之间的力学相互作用。在麻醉的痉挛性和正常发育的Han-Wistar大鼠中评估了腓肠肌(GA)、比目鱼肌(SO)和跖肌(PL)的长度-力特性。此外,还研究了协同的GA、SO和PL之间以及小腿肌肉与拮抗的胫骨前肌(TA)之间肌外肌筋膜力传递的程度。痉挛性GA和PL的主动长度-力曲线变窄,最大主动力降低。相比之下,痉挛性SO的主动长度-力特性与对照组相似。在参考位置(踝关节和膝关节角度为90°),发现痉挛性小腿肌肉组对踝关节背屈的阻力更高,被动僵硬度增加。在最佳长度时,痉挛性GA的被动僵硬度和被动力降低,而痉挛性SO的则增加。未发现小腿肌肉与TA之间存在力学相互作用。随着GA被拉长,尽管SO和PL的肌腱单位长度保持不变,但来自SO和PL的力下降。然而,这种相互作用的程度在痉挛性大鼠中并无差异。总之,痉挛对长度-力特性的影响具有肌肉特异性。观察到的GA和PL肌肉的变化与人类患者报道的肢体力学变化一致。我们的结果表明,痉挛性大鼠力学改变不能归因于力学相互作用的差异,而是源于个体肌肉结构。

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