Luff A R, Webb S N
J Physiol. 1985 Aug;365:13-28. doi: 10.1113/jphysiol.1985.sp015756.
Electromyographic (e.m.g.) activity was recorded from cross- and self-reinnervated soleus and extensor digitorum longus (e.d.l.) muscles of the cat during normal activity, including standing, walking and jumping. Activity patterns of normal soleus, e.d.l., and lateral gastrocnemius (l.g.) were essentially similar to those shown by other investigators. The self-reinnervated soleus fired phasically and synchronously with l.g. during walking but the activity was not trimmed to the extent that is seen in normal soleus. This is attributed to the relatively limited amount of proprioceptive information arising from such muscles. The activity pattern of the cross-reinnervated soleus muscles was variable. During walking, the phase of activity was sometimes coincident with that of a normal e.d.l., at other times (even in the same animal) it would be approximately coincident with l.g. The phase of activity usually consisted of an initial burst which was not sustained. Reflex activity elicited from the cross-reinnervated soleus was very similar to that of normal e.d.l., indicating the rigidity of connexions for reflex responses. reinnervated e.d.l. muscles; the activity attributable to the cross-reinnervated portion was similar to that seen in a self-reinnervated soleus. The activity pattern of soleus, reinnervated by the nerve to e.d.l. (an effective antagonist) is unlike that of either a normal soleus or e.d.l. muscle. This is attributed to a combination of lack of proprioceptive information and/or some degree of central remodelling.
在正常活动(包括站立、行走和跳跃)期间,记录了猫的交叉神经支配和自身神经支配的比目鱼肌以及趾长伸肌(e.d.l.)的肌电图(e.m.g.)活动。正常比目鱼肌、趾长伸肌和外侧腓肠肌(l.g.)的活动模式与其他研究者所展示的基本相似。自身神经支配的比目鱼肌在行走时与外侧腓肠肌同步且呈阶段性放电,但活动并未像正常比目鱼肌那样得到精确调整。这归因于此类肌肉产生的本体感受信息相对有限。交叉神经支配的比目鱼肌的活动模式是可变的。在行走过程中,其活动相位有时与正常趾长伸肌一致,其他时候(甚至在同一只动物身上)则大致与外侧腓肠肌一致。活动相位通常由一个不持续的初始爆发组成。从交叉神经支配的比目鱼肌引发的反射活动与正常趾长伸肌的反射活动非常相似,表明反射反应的连接具有稳定性。重新神经支配的趾长伸肌;交叉神经支配部分的活动与自身神经支配的比目鱼肌所见的活动相似。由支配趾长伸肌(一种有效的拮抗肌)的神经重新神经支配的比目鱼肌的活动模式与正常比目鱼肌或趾长伸肌均不同。这归因于本体感受信息的缺乏和/或某种程度的中枢重塑。