Le Ray Didier, Combes Denis, Déjean Cyril, Cattaert Daniel
Laboratoire de Neurobiologie des Réseaux, Centre National de la Recherche Scientifique-Unité Mixte de Recherche, Université Bordeaux 1, Talence, France
J Neurophysiol. 2005 Aug;94(2):1013-27. doi: 10.1152/jn.01255.2004. Epub 2005 Apr 13.
Although sensory nerves in vitro are known to convey both orthodromic (sensory) and antidromic (putatively modulating) action potentials, in most cases very little is known about their bidirectional characteristics in intact animals. Here, we have investigated both the sensory coding properties and antidromic discharges that occur during real walking in the freely behaving crayfish. The activity of the sensory nerve innervating the proprioceptor CBCO, a chordotonal organ that monitors both angular movement and position of the coxo-basipodite (CB) joint, which is implicated in vertical leg movements, was recorded chronically along with the electromyographic activity of the muscles that control CB joint movements. Two wire electrodes placed on the sensory nerve were used to discriminate orthodromic from antidromic action potentials and thus allowed for analysis of both sensory coding and antidromic discharges. A distinction is proposed between 3 main classes of sensory neuron, according to their firing in relation to levator muscle activity during free walking. In parallel, we describe 2 types of antidromic activity: one produced exclusively during motor activity and a second produced both during and in the absence of motor activity. A negative correlation was found between the activity of sensory neurons in each of the 3 classes and identified antidromic discharges during walking. Finally, a state-dependent plasticity of CBCO nerve activity has been found by which the distribution of sensory orthodromic and antidromic activity changes with the physiological state of the biomechanical apparatus.
虽然已知体外感觉神经可传导顺向(感觉性)和逆向(推测具有调节作用)动作电位,但在大多数情况下,对于完整动物体内感觉神经的双向特性却知之甚少。在此,我们研究了自由活动的小龙虾在实际行走过程中发生的感觉编码特性和逆向放电。长期记录支配本体感受器CBCO的感觉神经活动,CBCO是一种弦音器官,可监测与垂直腿部运动有关的基节-底节(CB)关节的角运动和位置,同时还记录控制CB关节运动的肌肉的肌电图活动。置于感觉神经上的两个金属丝电极用于区分顺向和逆向动作电位,从而能够对感觉编码和逆向放电进行分析。根据自由行走期间感觉神经元相对于提肌活动的放电情况,提出了3种主要感觉神经元类型之间的区别。同时,我们描述了2种逆向活动类型:一种仅在运动活动期间产生,另一种在运动活动期间和无运动活动时均产生。发现3类感觉神经元中每一类的活动与行走期间识别出的逆向放电之间呈负相关。最后,发现了CBCO神经活动的状态依赖性可塑性,即感觉顺向和逆向活动的分布随生物力学装置的生理状态而变化。