Suppr超能文献

振动对骑行过程中运动学和肌肉激活的影响。

The effect of vibration on kinematics and muscle activation during cycling.

机构信息

German Sport University Cologne - Institute of Biomechanics and Orthopaedics.

German Sport University Cologne, Institute of Outdoor Sports and Environmental Science, Cologne, Germany.

出版信息

J Sports Sci. 2022 Aug;40(15):1760-1771. doi: 10.1080/02640414.2022.2109841. Epub 2022 Aug 19.

Abstract

Vibration has the potential to compromise performance in cycling. This study aimed to investigate the effects of vibration on full-body kinematics and muscle activation time series. Nineteen male amateur cyclists (mass 74.9 ± 5.9 kg, body height 1.82 ± 0.05 m, Vo2max 57 ± 9 ml/kg/min, age 27 ± 7 years) cycled (216 ± 16 W) with (Vib) and without (NoVib) vibration. Full-body kinematics and muscle activation time series were analysed. Vibration did not affect lower extremity joint kinematics significantly. The pelvic rotated with vibration towards the posterior direction (NoVib: 22.2 ± 4.8°, Vib: 23.1 ± 4.7°, p = 0.016, d = 0.20), upper body lean (NoVib: 157.8 ± 3.0°, Vib: 158.9 ± 3.4°, p = 0.001, d = 0.35) and elbow flexion (NoVib: 27.0 ± 8.2°, Vib: 29.4 ± 9.0°, p = 0.010, d = 0.28) increased significantly with vibration. The activation of lower extremity muscles (soleus, gastrocnemius lat., tibialis ant., vastus med., rectus fem., biceps fem.) increased significantly during varying phases of the crank cycle due to vibration. Vibration increased arm and shoulder muscle (triceps brachii, deltoideus pars scapularis) activation significantly over almost the entire crank cycle. The co-contraction of knee and ankle flexors and extensors (vastus med. - gastrocnemius lat., vastus med. - biceps fem., soleus - tibialis ant.) increased significantly with vibration. In conclusion vibrations influence main tasks such as propulsion and upper body stabilization on the bicycle to a different extent. The effect of vibration on the task of propulsion is limited due to unchanged lower body kinematics and only phase-specific increases of muscular activation during the crank cycle. Additional demands on upper body stabilization are indicated by adjusted upper body kinematics and increased muscle activation of the arm and shoulder muscles during major parts of the cranking cycle.

摘要

振动有可能会影响自行车运动的表现。本研究旨在探讨振动对全身运动学和肌肉激活时间序列的影响。19 名男性业余自行车运动员(体重 74.9±5.9kg,身高 1.82±0.05m,Vo2max 57±9ml/kg/min,年龄 27±7 岁)在振动(Vib)和无振动(NoVib)条件下以(216±16W)的功率进行骑行。分析了全身运动学和肌肉激活时间序列。振动对下肢关节运动学没有显著影响。骨盆随着振动向后方旋转(NoVib:22.2±4.8°,Vib:23.1±4.7°,p=0.016,d=0.20),上半身倾斜(NoVib:157.8±3.0°,Vib:158.9±3.4°,p=0.001,d=0.35)和肘部弯曲(NoVib:27.0±8.2°,Vib:29.4±9.0°,p=0.010,d=0.28)显著增加。由于振动,下肢肌肉(比目鱼肌、腓肠肌外侧头、胫骨前肌、股四头肌内侧头、股直肌、股二头肌)在曲柄周期的不同阶段的激活显著增加。振动显著增加了手臂和肩部肌肉(肱三头肌、三角肌肩胛部)在几乎整个曲柄周期的激活。膝关节和踝关节屈伸肌(股四头肌内侧头-腓肠肌外侧头、股四头肌内侧头-股二头肌、比目鱼肌-胫骨前肌)的协同收缩显著增加。总之,振动在不同程度上影响自行车上的推进和上半身稳定等主要任务。由于下肢运动学不变,振动对推进任务的影响有限,只是在曲柄周期的特定阶段增加肌肉激活。上半身运动学的调整和曲柄周期主要部分手臂和肩部肌肉激活的增加表明对上肢稳定的额外要求。

相似文献

1
The effect of vibration on kinematics and muscle activation during cycling.振动对骑行过程中运动学和肌肉激活的影响。
J Sports Sci. 2022 Aug;40(15):1760-1771. doi: 10.1080/02640414.2022.2109841. Epub 2022 Aug 19.
2
The Effect of Cycling-specific Vibration on Neuromuscular Performance.周期性振动对神经肌肉表现的影响。
Med Sci Sports Exerc. 2021 May 1;53(5):936-944. doi: 10.1249/MSS.0000000000002565.
3
The effect of road-bike damping on neuromuscular short-term performance.公路自行车减震对神经肌肉短期性能的影响。
Sports Biomech. 2020 Dec;19(6):723-737. doi: 10.1080/14763141.2020.1797153. Epub 2020 Sep 18.

引用本文的文献

1
Field investigation of bicycles for indirect bridge structural health monitoring.用于间接桥梁结构健康监测的自行车现场调查。
J Civ Struct Health Monit. 2025;15(2):465-481. doi: 10.1007/s13349-024-00885-8. Epub 2024 Dec 21.

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验