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Fiber-type dependence of stretch-induced force enhancement in rat skeletal muscle.

机译:对大鼠骨骼肌拉伸诱导力增强的纤维类型依赖性。

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摘要

When an active muscle is stretched, the force increases due to strain of contractile and noncontractile proteins. We examined this force enhancement in rat extensor digitorum longus (EDL) and soleus muscles, which differ in their composition of these proteins, and their susceptibility to damage. Small stretches were applied at different velocities during isometric contractions from which we quantified the velocity-dependent contractile and velocity-independent noncontractile contributions to force enhancement. Whereas the contractile contribution was significantly greater in soleus than EDL, the noncontractile force enhancement was significantly greater in EDL than soleus, and increased approximately 6-fold after damaging eccentric contractions. The increased contractile stiffness may be functionally beneficial in slow muscle, as resistance to lengthening is fundamental to maintaining posture. Following stretch-induced muscle damage this capacity is compromised, leading to increased strain of noncontractile proteins that may facilitate the activation of signaling pathways involved in muscle adaptation to injury.
机译:拉伸活动肌肉时,由于收缩和非收缩蛋白的应变,力会增加。我们检查了大鼠趾长伸肌(EDL)和比目鱼肌中的这种力量增强,它们在这些蛋白质的组成及其对损伤的敏感性方面有所不同。在等距收缩期间以不同的速度施加小拉伸,从中我们量化了速度相关的收缩和速度独立的非收缩对力增强的贡献。尽管比目鱼肌的收缩作用明显比EDL大,但EDL的非收缩力增强作用明显大于比目鱼肌,并且在破坏离心收缩后增加了约6倍。收缩刚度的增加可能对慢肌在功能上有益,因为对伸长的抵抗是保持姿势的基础。拉伸引起的肌肉损伤后,这种能力受到损害,导致非收缩蛋白的应变增加,这可能促进涉及肌肉适应损伤的信号通路的激活。

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