Huyghues-Despointes Clotilde M J I, Cope Timothy C, Nichols T Richard
Department of Physiology, Emory University, Atlanta, Georgia 30322, USA.
J Neurophysiol. 2003 Sep;90(3):1537-46. doi: 10.1152/jn.00718.2002. Epub 2003 May 7.
The manner in which activation levels influence intrinsic muscular properties and contributions of the stretch reflex were studied in homogeneous soleus (SOL) and heterogeneous gastrocnemius (G) muscles in the decerebrate cat. Intrinsic mechanical properties were represented by the initial stiffness of the muscle, measured prior to reflex action, and by the tendency of the muscle to yield during stretch in the absence of the stretch reflex. Stiffness regulation by the stretch reflex was evaluated by measuring the extent to which reflex action reduces yielding and the extent to which stiffness depends on background force. Intrinsic mechanical properties were measured in muscles deprived of effective autogenic reflexes using the method of muscular reinnervation. Reinnervated muscles were recruited to force levels comparable to those achieved during natural locomotion. As force declined during crossed-extension reflexes in reinnervated and intact muscles, initial stiffness declined according to similar convex trajectories. The data did not support the hypothesis that, for a given force level, initial stiffness is greatest in populations of predominantly type I motor units. Incremental stiffness (Deltaf/Deltal) of both G and SOL increased in the presence of the stretch reflex. Yielding of SOL (ratio of incremental to initial stiffness) substantially decreased in the presence of the stretch reflex over the full range of forces. In reflexive G, yielding significantly decreased for low to intermediate forces, whereas at higher forces, yielding was similar irrespective of the presence or absence of the stretch reflex. The stretch reflex regulates stiffness in both homogeneous and heterogeneous muscles.
在去大脑猫的均匀比目鱼肌(SOL)和非均匀腓肠肌(G)中,研究了激活水平影响固有肌肉特性和牵张反射贡献的方式。固有力学特性由反射动作之前测量的肌肉初始刚度以及在没有牵张反射的情况下肌肉在拉伸过程中屈服的趋势来表示。通过测量反射动作减少屈服的程度以及刚度依赖于背景力的程度来评估牵张反射对刚度的调节。使用肌肉再支配方法在缺乏有效自生反射的肌肉中测量固有力学特性。将再支配的肌肉募集到与自然运动期间达到的力水平相当的力水平。在再支配和完整肌肉的交叉伸展反射过程中,随着力的下降,初始刚度按照相似的凸形轨迹下降。数据不支持以下假设:对于给定的力水平,初始刚度在主要为I型运动单位的群体中最大。在存在牵张反射的情况下,G和SOL的增量刚度(Δf/Δl)均增加。在整个力范围内,在存在牵张反射的情况下,SOL的屈服(增量刚度与初始刚度之比)大幅下降。在反射性G中,低至中等力时屈服显著下降,而在较高力时,无论是否存在牵张反射,屈服情况相似。牵张反射在均匀和非均匀肌肉中均调节刚度。