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人体单脚跳和跳跃过程中肌肉刚度的动态控制及H反射调制

Dynamic control of muscle stiffness and H reflex modulation during hopping and jumping in man.

作者信息

Dyhre-Poulsen P, Simonsen E B, Voigt M

机构信息

Institute of Neurophysiology, University of Copenhagen, Denmark.

出版信息

J Physiol. 1991 Jun;437:287-304. doi: 10.1113/jphysiol.1991.sp018596.

DOI:10.1113/jphysiol.1991.sp018596
PMID:1890636
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1180048/
Abstract
  1. The objective of the study was to evaluate the functional effects of reflexes on muscle mechanics during natural voluntary movements. The excitability of the H (Hoffmann) reflex was used as a measure of the excitability of the central component of the stretch reflex. 2. We recorded EMG, ground reaction forces and the H reflex in the soleus muscle in humans while landing from a downward jump, during drop jumping and during hopping. The movements were also recorded by high-speed cinematography. 3. The EMG pattern was adapted to the motor task. When landing the EMG in the soleus muscle and in the anterior tibial muscle showed preinnervation and alternating activity after touch down. When hopping there was little preinnervation in the soleus muscle, and the activity was initiated about 45 ms after touch down by a peak and continued unbroken until lift off. In the drop jumps the EMG pattern depended on the jumping style used by the subject. 4. The H reflex in the soleus muscle was strongly modulated in a manner appropriate to the requirements of the motor task. During landing from a downward jump the H reflex was low at touch down whereas while hopping it was high at touch down. During drop jumping it was variable and influenced by the jumping technique. 5. Muscle stiffness in the ankle joint was negative after touch down when landing, but always positive when hopping. 6. It is suggested that during landing the alternating EMG pattern after touch down was programmed and little influenced by reflexes. During hopping reflexes could contribute to the initial peak and the EMG during lift off. 7. The programmed EMG activity and the suppression of the H reflex while landing probably contribute to the development of the negative stiffness and change the muscles from a spring to a damping unit.
摘要
  1. 本研究的目的是评估反射在自然自主运动过程中对肌肉力学的功能影响。H(霍夫曼)反射的兴奋性被用作牵张反射中枢成分兴奋性的衡量指标。2. 我们记录了人类从下跳落地、进行纵跳和单脚跳时比目鱼肌的肌电图(EMG)、地面反作用力和H反射。这些动作也通过高速摄像进行记录。3. EMG模式适应了运动任务。落地时,比目鱼肌和胫骨前肌的EMG显示出预激活,触地后有交替活动。单脚跳时,比目鱼肌几乎没有预激活,活动在触地后约45毫秒由一个峰值开始,并持续不间断直至离地。在纵跳中,EMG模式取决于受试者使用的跳跃方式。4. 比目鱼肌的H反射以一种适合运动任务需求的方式受到强烈调制。从下跳落地时,触地时H反射较低,而单脚跳时触地时H反射较高。在纵跳过程中,它是可变的,并受跳跃技术影响。5. 落地时触地后踝关节的肌肉僵硬度为负,但单脚跳时始终为正。6. 有人认为,落地时触地后的交替EMG模式是预先设定的,受反射影响较小。单脚跳时,反射可能有助于初始峰值和离地时的EMG。7. 落地时预先设定的EMG活动和H反射的抑制可能有助于负僵硬度的形成,并将肌肉从弹簧转变为阻尼单元。

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