Abelew T A, Miller M D, Cope T C, Nichols T R
Department of Rehabilitation Medicine, Emory University, Atlanta, Georgia 30322, USA.
J Neurophysiol. 2000 Nov;84(5):2709-14. doi: 10.1152/jn.2000.84.5.2709.
To investigate the role of localized, proprioceptive feedback in the regulation of interjoint coordination during locomotion, we substantially attenuated neural feedback from the triceps surae muscles in one hindlimb in each of four cats using the method of self-reinnervation. After allowing the recovery of motor innervation, the animals were filmed during level and ramp walking. Deficits were small or undetectable during walking on the level surface or up the ramp, behaviors that require a large range of forces in the triceps surae muscles. During walking down the ramp, when the triceps surae muscles normally undergo active lengthening, the ankle joint underwent a large yield and the coordination between ankle and knee was disrupted. The correlation of the deficit with the direction of length change and not muscle force suggested that a loss of feedback from muscle spindle receptors was primarily responsible for the deficit. These results indicate an important role for the stretch reflex and stiffness regulation during locomotion.
为了研究局部本体感觉反馈在运动过程中关节间协调调节中的作用,我们采用自神经移植法,大幅减弱了四只猫每只后肢中一块小腿三头肌的神经反馈。在运动神经支配恢复后,对动物在水平和斜坡行走时进行拍摄。在水平表面行走或上坡时,缺陷较小或无法检测到,而上坡行为需要小腿三头肌产生大范围的力量。在下坡行走时,当小腿三头肌通常进行主动拉长时,踝关节出现了大幅屈服,踝关节和膝关节之间的协调性受到破坏。缺陷与长度变化方向而非肌肉力量的相关性表明,肌梭感受器反馈的丧失是造成缺陷的主要原因。这些结果表明了牵张反射和运动过程中刚度调节的重要作用。