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髋关节角度对短跑运动员腘绳肌等速活动的影响。

Influence of hip-flexion angle on hamstrings isokinetic activity in sprinters.

机构信息

Department of Physiotherapy, School of Health Sciences, University of Applied Sciences Western Switzerland, Lausanne, Switzerland.

出版信息

J Athl Train. 2012 Jul-Aug;47(4):390-5. doi: 10.4085/1062-6050-47.4.04.

Abstract

CONTEXT

Hamstrings strains are common and debilitating injuries in many sports. Most hamstrings exercises are performed at an inadequately low hip-flexion angle because this angle surpasses 70° at the end of the sprinting leg's swing phase, when most injuries occur.

OBJECTIVE

To evaluate the influence of various hip-flexion angles on peak torques of knee flexors in isometric, concentric, and eccentric contractions and on the hamstrings-to-quadriceps ratio.

DESIGN

Descriptive laboratory study.

SETTING

Research laboratory.

PATIENTS AND OTHER PARTICIPANTS

Ten national-level sprinters (5 men, 5 women; age = 21.2 ± 3.6 years, height = 175 ± 6 cm, mass = 63.8 ± 9.9 kg).

INTERVENTION(S): For each hip position (0°, 30°, 60°, and 90° of flexion), participants used the right leg to perform (1) 5 seconds of maximal isometric hamstrings contraction at 45° of knee flexion, (2) 5 maximal concentric knee flexion-extensions at 60° per second, (3) 5 maximal eccentric knee flexion-extensions at 60° per second, and (4) 5 maximal eccentric knee flexionextensions at 150° per second.

MAIN OUTCOME MEASURE(S): Hamstrings and quadriceps peak torque, hamstrings-to-quadriceps ratio, lateral and medial hamstrings root mean square.

RESULTS

We found no difference in quadriceps peak torque for any condition across all hip-flexion angles, whereas hamstrings peak torque was lower at 0° of hip flexion than at any other angle (P < .001) and greater at 90° of hip flexion than at 30° and 60° (P < .05), especially in eccentric conditions. As hip flexion increased, the hamstrings-to-quadriceps ratio increased. No difference in lateral or medial hamstrings root mean square was found for any condition across all hip-flexion angles (P > .05).

CONCLUSIONS

Hip-flexion angle influenced hamstrings peak torque in all muscular contraction types; as hip flexion increased, hamstrings peak torque increased. Researchers should investigate further whether an eccentric resistance training program at sprint-specific hip-flexion angles (70° to 80°) could help prevent hamstrings injuries in sprinters. Moreover, hamstrings-to-quadriceps ratio assessment should be standardized at 80° of hip flexion.

摘要

背景

腘绳肌拉伤在许多运动中较为常见,且较为严重。大多数腘绳肌训练都是在髋关节屈角不足的情况下进行的,因为在短跑摆动阶段末期,这个角度超过 70°,而大多数损伤都发生在此阶段。

目的

评估不同髋关节屈角对等长、向心和离心收缩时膝关节屈肌峰值力矩以及腘绳肌/股四头肌比值的影响。

设计

描述性实验室研究。

地点

研究实验室。

患者和其他参与者

10 名国家级短跑运动员(5 男,5 女;年龄=21.2±3.6 岁,身高=175±6cm,体重=63.8±9.9kg)。

干预

对于每个髋关节位置(0°、30°、60°和 90°屈曲),参与者使用右腿进行(1)5 秒最大等长腘绳肌收缩,膝关节屈曲 45°,(2)5 次最大向心膝关节屈伸运动,速度为 60°/秒,(3)5 次最大离心膝关节屈伸运动,速度为 60°/秒,(4)5 次最大离心膝关节屈伸运动,速度为 150°/秒。

主要观察指标

腘绳肌和股四头肌峰值力矩、腘绳肌/股四头肌比值、外侧和内侧腘绳肌均方根。

结果

在所有髋关节屈角下,我们发现任何情况下股四头肌峰值力矩均无差异,而 0°髋关节屈曲时腘绳肌峰值力矩低于其他任何角度(P<0.001),90°髋关节屈曲时高于 30°和 60°(P<0.05),特别是在离心运动条件下。随着髋关节屈曲的增加,腘绳肌/股四头肌比值增加。在所有髋关节屈角下,任何情况下外侧和内侧腘绳肌均方根均无差异(P>0.05)。

结论

髋关节屈角影响所有肌肉收缩类型的腘绳肌峰值力矩;随着髋关节屈曲度的增加,腘绳肌峰值力矩增加。研究人员应进一步研究在特定短跑的髋关节屈角(70°至 80°)下进行离心抗阻训练方案是否有助于预防短跑运动员的腘绳肌损伤。此外,应在髋关节屈曲 80°时标准化腘绳肌/股四头肌比值的评估。

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