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肌肉-肌腱单元特性与离心运动和肌酸激酶反应相关。

Muscle-Tendon Unit Properties Eccentric Exercise Correlate with the Creatine Kinase Response.

作者信息

Hicks Kirsty M, Onambele-Pearson Gladys L, Winwood Keith, Morse Christopher I

机构信息

Department of Sport, Exercise & Rehabilitation, Northumbria UniversityNewcastle Upon Tyne, United Kingdom.

Department of Exercise and Sport Science, Health Exercise and Active Living Research Centre, Manchester Metropolitan UniversityCrewe, United Kingdom.

出版信息

Front Physiol. 2017 Sep 19;8:657. doi: 10.3389/fphys.2017.00657. eCollection 2017.

Abstract

The aim of this paper was to determine whether; (1) patella tendon stiffness, (2) the magnitude of vastus lateralis fascicle lengthening, and (3) eccentric torque correlate with markers of exercise induced muscle damage. Combining dynamometry and ultrasonography, patella tendon properties and vastus lateralis architectural properties were measured and the first of six sets of 12 maximal voluntary eccentric knee extensions. Maximal isometric torque loss and creatine kinase activity were measured - h post-damage as markers of exercise-induced muscle damage. A significant increase in creatine kinase (883 ± 667 UL) and a significant reduction in maximal isometric torque loss (21%) was reported post-eccentric contractions. Change in creatine kinase from pre to peak significantly correlated with the relative change in vastus lateralis fascicle length during eccentric contractions ( = 0.53, = 0.02) and with eccentric torque ( = 0.50, = 0.02). Additionally, creatine kinase tended to correlate with estimated patella tendon lengthening during eccentric contractions ( < 0.10). However, creatine kinase did not correlate with resting measures of patella tendon properties or vastus lateralis properties. Similarly, torque loss did not correlate with any patella tendon or vastus lateralis properties at rest or during eccentric contractions. The current study demonstrates that the extent of fascicle strain during eccentric contractions correlates with the magnitude of the creatine kinase response. Although at rest, there is no relationship between patella tendon properties and markers of muscle damage; during eccentric contractions however, the patella tendon may play a role in the creatine kinase response following EIMD.

摘要

本文的目的是确定

(1)髌腱刚度,(2)股外侧肌束拉长的程度,以及(3)离心扭矩是否与运动诱发的肌肉损伤标志物相关。结合测力计和超声检查,在进行六组每组12次最大自主离心膝关节伸展中的第一次时,测量髌腱特性和股外侧肌结构特性。测量最大等长扭矩损失和肌酸激酶活性——损伤后h作为运动诱发肌肉损伤的标志物。离心收缩后,肌酸激酶显著增加(883±667 UL),最大等长扭矩损失显著降低(21%)。肌酸激酶从运动前到峰值的变化与离心收缩期间股外侧肌束长度的相对变化显著相关(r = 0.53,P = 0.02),并与离心扭矩相关(r = 0.50,P = 0.02)。此外,肌酸激酶在离心收缩期间倾向于与估计的髌腱拉长相关(P < 0.10)。然而,肌酸激酶与髌腱特性或股外侧肌特性的静息测量值无关。同样,扭矩损失在静息或离心收缩期间与任何髌腱或股外侧肌特性均无相关性。当前研究表明,离心收缩期间肌束应变程度与肌酸激酶反应的幅度相关。虽然在静息时,髌腱特性与肌肉损伤标志物之间没有关系;然而在离心收缩期间,髌腱可能在离心诱导的肌肉损伤(EIMD)后的肌酸激酶反应中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d786/5610718/995872741366/fphys-08-00657-g0001.jpg

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