Slesinger P, Bell C C
J Comp Physiol A. 1985 Jul;157(1):15-22. doi: 10.1007/BF00611090.
In electric fish of the family Mormyridae some primary afferent fibers conduct impulses not only from electroreceptors to the brain but also from the brain to the receptors. The efferent impulses may be elicited by electrical stimulation which is within the physiological range, i.e., by stimulation which is similar in amplitude and duration to the stimulation that is caused by the fish's own electric organ discharge. Afferent and efferent impulses in the same afferent fiber were identified by: simultaneously recording from a fiber at two different points, at the receptor and at the nerve trunk (Figs. 2C-H; 3B-D); by cutting the afferent fiber between the brain and the recording site as well as between the recording site and the periphery; and by intra-axonal recording from the afferent fiber near its entry into the brain (Fig. 4). The efferent impulses result from the central integration of a corollary discharge of the electric organ motor command with excitatory and inhibitory input from several different receptors near the one from which afferent impulses originate (Fig. 4). The centrally originating impulse may be capable of modifying the effect of signals originating in the periphery.
在长颌鱼科的电鱼中,一些初级传入纤维不仅将冲动从电感受器传导至大脑,还从大脑传导至感受器。传出冲动可由生理范围内的电刺激引发,即由幅度和持续时间与鱼类自身发电器官放电所引起的刺激相似的刺激引发。同一传入纤维中的传入和传出冲动通过以下方式得以识别:在纤维的两个不同点同时进行记录,一处在感受器,另一处在神经干(图2C - H;3B - D);在大脑与记录位点之间以及记录位点与外周之间切断传入纤维;以及在传入纤维进入大脑附近处进行轴内记录(图4)。传出冲动源于电器官运动指令的伴随放电与来自传入冲动起始感受器附近几种不同感受器的兴奋性和抑制性输入的中枢整合(图4)。源于中枢的冲动可能能够改变源自外周的信号的效应。