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等速腘绳肌/股四头肌力量比:关节角速度、重力校正和收缩模式的影响

Isokinetic hamstring/quadriceps strength ratio: influence from joint angular velocity, gravity correction and contraction mode.

作者信息

Aagaard P, Simonsen E B, Trolle M, Bangsbo J, Klausen K

机构信息

Team Danmark Testcenter, Department of Exercise Physiology TTA-2001, Rigshospitalet, University Hospital Copenhagen, Denmark.

出版信息

Acta Physiol Scand. 1995 Aug;154(4):421-7. doi: 10.1111/j.1748-1716.1995.tb09927.x.

Abstract

This study investigated isokinetic peak- and angle-specific hamstring/quadriceps strength ratios (conventional H/Q ratio) obtained during concentric and eccentric muscle contraction and examined the influence of joint angular velocity and the effect of gravity correction on these ratios. Also, a 'functional' H/Q ratio was defined by calculating eccentric hamstring strength relative to concentric quadriceps strength (Hecc/Qcon' representative for knee extension) and calculating concentric hamstring strength relative to eccentric quadriceps strength (Hcon/Qecc' representative for knee flexion). The H/Q ratio was calculated based on isokinetic peak moment and 50 degree-moment (0 degree = full extension) obtained at joint angular velocities 30, 120 and 240 degrees s-1. Gravity corrected conventional H/Q ratio remained constant across speeds and contraction mode, ranging from 0.47 to 0.54 and from 0.49 to 0.56 based on peak and 50 degree moment, respectively. In contrast, non-corrected H/Q ratio increased during concentric contraction from 0.58 at 30 degrees s-1 to 0.74 at 240 degree s-1 (P < 0.01). For knee extension at 240 degrees s-1 an Hecc/Qcon of 1.05 (peak) and 0.89 (50 degrees) was observed while for flexion at 240 degrees s-1 an Hcon/Qecc of 0.27 (peak) and 0.28 (50 degrees) was observed. In conclusion, gravity correction had high influence on the change in H/Q ratio with variation in extension velocity. A potential 1:1 hamstring/quadriceps strength relationship was demonstrated for fast knee extension, indicating a significant functional capacity of the hamstring muscles for providing muscular stability at the knee joint in such situations.

摘要

本研究调查了在向心和离心肌肉收缩过程中获得的等速峰值和特定角度的腘绳肌/股四头肌力量比值(传统H/Q比值),并研究了关节角速度的影响以及重力校正对这些比值的作用。此外,通过计算相对于向心股四头肌力量的离心腘绳肌力量(Hecc/Qcon,代表膝关节伸展)以及相对于离心股四头肌力量的向心腘绳肌力量(Hcon/Qecc,代表膝关节屈曲)来定义“功能性”H/Q比值。H/Q比值是根据在30、120和240度/秒的关节角速度下获得的等速峰值力矩和50度力矩(0度 = 完全伸展)计算得出的。重力校正后的传统H/Q比值在不同速度和收缩模式下保持恒定,基于峰值力矩和50度力矩分别在0.47至0.54以及0.49至0.56之间。相比之下,未校正的H/Q比值在向心收缩过程中从30度/秒时 的0.58增加到240度/秒时的0.74(P < 0.01)。在240度/秒的膝关节伸展时,观察到Hecc/Qcon为1.05(峰值)和0.89(50度),而在240度/秒的膝关节屈曲时,观察到Hcon/Qecc为0.27(峰值)和0.28(50度)。总之,重力校正对H/Q比值随伸展速度变化的改变有很大影响。对于快速膝关节伸展,证明了腘绳肌/股四头肌力量存在潜在的1:1关系,表明在这种情况下腘绳肌在为膝关节提供肌肉稳定性方面具有显著的功能能力。

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