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首页> 外文期刊>The journal of orthopaedic and sports physical therapy >The effect of selective muscle fatigue on sagittal lower limb kinematics and muscle activity during level running.
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The effect of selective muscle fatigue on sagittal lower limb kinematics and muscle activity during level running.

机译:水平跑步过程中选择性肌肉疲劳对矢状下肢运动学和肌肉活动的影响。

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STUDY DESIGN: Controlled laboratory study. OBJECTIVES: To compare the changes in lower limb sagittal kinematics in running after a knee fatigue protocol with those observed after an ankle fatigue protocol. BACKGROUND: Impaired force-generating ability of specific muscles may affect running mechanics, with negative implications for injury occurrence and performance. Identifying the strategies used to compensate for fatigue of selected muscles may assist in the design of more effective exercise programs for injury prevention and performance enhancement in running. METHODS AND MEASURES: Sagittal plane kinematic data and the electromyographic (EMG) signal of the vastus medialis (VM), gastrocnemius (GAS), and biceps femoris (BF) muscles were collected from 15 females running at 3.61 m/s on a treadmill prior to, and following, an isokinetic knee extension/flexion and, on a separate day, an ankle plantar flexion/dorsiflexion fatigue protocol performed at 120 degrees /s. RESULTS: Ankle muscle fatigue caused decreased ankle dorsiflexion, while knee fatigue caused increased knee flexion at initial contact (P<.05). Both protocols increased knee flexion angle at toe-off, as well as the amplitude of GAS and VM EMG signal, with the hip more extended after knee fatigue and the ankle more plantar flexed after ankle muscle fatigue. Ankle muscle fatigue caused a significant increase in hip extensionand ankle plantar flexion angular velocity, and a decline of BF EMG signal during the swing phase (P<.05). Knee muscle fatigue decreased hip and knee flexion angular velocity and increased BF EMG signal during the swing phase (P<.05). CONCLUSION: Localized muscle fatigue effects on sagittal kinematics differed between the 2 protocols. However, the strategy used to compensate for fatigue was similar for both protocols: to protect the joints at initial impact and to prevent impairments in performance during toeoff and swing phase.J Orthop Sports Phys Ther 2009;39(3):210-220, Epub 24 October 2008. doi:10.2519/jospt.2009.2859.
机译:研究设计:受控实验室研究。目的:比较膝盖疲劳方案后和踝疲劳方案后观察到的下肢矢状运动学的变化。背景:特定肌肉的力量生成能力受损可能会影响跑步机体,对损伤的发生和性能产生负面影响。确定用于补偿选定肌肉疲劳的策略可能有助于设计更有效的运动计划,以预防伤害并增强跑步性能。方法和措施:收集了之前在跑步机上以3.61 m / s的速度运动的15位女性的矢状面运动数据和股内侧肌(VM),腓肠肌(GAS)和股二头肌(BF)的肌电图(EMG)信号等距膝关节伸展/屈曲,以及随后的另一天,以120度/ s的速度进行踝plant屈/背屈疲劳试验。结果:踝关节肌肉疲劳导致踝背屈减少,而膝关节疲劳导致初次接触时膝关节屈曲增加(P <.05)。两种方案都增加了脚趾处的膝盖屈曲角度以及GAS和VM EMG信号的幅度,膝盖疲劳后髋关节更加伸展,踝部肌肉疲劳后踝关节更加plant屈。踝关节肌肉疲劳导致髋关节伸展和踝足底屈曲角速度显着增加,并且在摆动阶段BF EMG信号下降(P <.05)。在摆动阶段,膝部肌肉疲劳会降低髋部和膝部屈曲角速度,并增加BF EMG信号(P <.05)。结论:两种协议之间的局部肌肉疲劳对矢状运动学的影响是不同的。但是,两种方案用于补偿疲劳的策略都相似:在初始冲击时保护关节,并防止在下趾和挥杆阶段的表现受损。JOrthop Sports Phys Ther 2009; 39(3):210-220, Epub 2008年10月24日。doi:10.2519 / jospt.2009.2859。

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