Mogdans J, Bleckmann H, Menger N
Zoologisches Institut, Universität Bonn, Germany.
Brain Behav Evol. 1997;50(5):261-83. doi: 10.1159/000113341.
This study describes the discharges of central units in the medulla of the goldfish, Carassius auratus, to hydrodynamic stimuli received by the lateral line. We stimulated the animal with a small object moving in the water and recorded activity of 85 medullary lateral line units in response to different motion directions and to various object distances, velocities, accelerations and sizes. All but one unit increased discharge rate when the moving object passed the fish laterally. Five response types were distinguished based on temporal patterns of unit responses. Ten units were recorded which encoded motion direction by different temporal discharge patterns. In general, discharge rates decreased when object distance was increased and when object speed was decreased. When object size was decreased, discharge rates decreased systematically in one group of units, but they were comparable for all but the smallest object tested in a second group of units. Units responded about equally well whether an object was moved at a constant velocity or was accelerated when it passed the fish. The data indicate that medullary lateral line units in the goldfish can encode motion direction but are not tuned to other aspects of an object moving in the water. The functional properties of units in the medulla of goldfish are similar to those reported for medullary units in the catfish Ancistrus sp., suggesting that the central mechanisms for processing complex hydrodynamic stimuli may be quite similar in fish species that occupy habitats with different hydrodynamic conditions.
本研究描述了金鱼(Carassius auratus)延髓中央单元对侧线所接收的流体动力刺激的放电情况。我们用一个在水中移动的小物体刺激动物,并记录了85个延髓侧线单元对不同运动方向、不同物体距离、速度、加速度和大小的反应活动。当移动物体从鱼的侧面经过时,除一个单元外,所有单元的放电率均增加。根据单元反应的时间模式区分出五种反应类型。记录到10个单元,它们通过不同的时间放电模式对运动方向进行编码。一般来说,当物体距离增加和物体速度降低时,放电率会下降。当物体尺寸减小时,一组单元的放电率会系统性下降,但在另一组单元中,除了测试的最小物体外,其他物体的放电率相当。无论物体是以恒定速度移动还是在经过鱼时加速,单元的反应都差不多。数据表明,金鱼延髓侧线单元能够编码运动方向,但对在水中移动物体的其他方面没有调谐作用。金鱼延髓中单元的功能特性与报道的鲶鱼Ancistrus sp.延髓单元的功能特性相似,这表明在占据不同流体动力条件栖息地的鱼类中,处理复杂流体动力刺激的中枢机制可能非常相似。