New J G
Marine Biological Laboratory, Woods Hole, Massachusetts 02543.
Biol Bull. 1994 Aug;187(1):64-75. doi: 10.2307/1542166.
Skates possess bilateral electric organs that produce intermittent, weak discharges of relatively long duration compared to the discharges of other weakly electric fish. They, like all elasmobranchs, also have an electrosensory system capable of detecting weak, low-frequency electric fields. Several studies have suggested that the discharge is used in some type of social communication. This study measured the strength and nature of the response of the skate electrosensory system to electric organ discharge. Electric organ discharge (EOD) was elicited via electrical stimulation of the medullary command nucleus in two species of skates. The temporal structure and power spectra of the EODs demonstrated that they should be effective stimuli for the skate electrosensory system. The responses of electrosensory afferent fibers in the anterior lateral line nerve (ALLN) to EODs were variable depending upon the location and orientation of the receptor. The responses of most ALLN fibers were very weak compared to the strong reafference produced by the skate's ventilatory activity. Unlike the common-mode ventilatory reafference, EOD reafference was variable in terms of excitation or inhibition, depending upon receptor orientation. Despite the low signal-to-noise ratio observed in ALLN responses to EODs, it is likely that EODs serve as a communicative signal over moderate distances.
鳐鱼拥有双侧电器官,与其他弱电鱼的放电相比,其能产生持续时间相对较长的间歇性微弱放电。和所有软骨鱼一样,它们也有一个能够探测微弱低频电场的电感应系统。多项研究表明,这种放电被用于某种形式的社交交流。本研究测量了鳐鱼电感应系统对电器官放电的反应强度和性质。通过电刺激两种鳐鱼的延髓指令核来引发电器官放电(EOD)。EOD的时间结构和功率谱表明,它们应该是鳐鱼电感应系统的有效刺激源。前侧线神经(ALLN)中电感应传入纤维对EOD的反应因感受器的位置和方向而异。与鳐鱼呼吸活动产生的强烈再传入相比,大多数ALLN纤维的反应非常微弱。与共模呼吸再传入不同,EOD再传入在兴奋或抑制方面是可变的,这取决于感受器的方向。尽管在ALLN对EOD的反应中观察到信噪比较低,但EOD很可能在中等距离上作为一种交流信号。