Chagnaud Boris Phillippe, Bleckmann Horst, Engelmann Jacob
Institute for Zoology, University of Bonn, Poppelsdorfer Schloss, 53115 Bonn, Germany.
J Exp Biol. 2006 Jan;209(Pt 2):327-42. doi: 10.1242/jeb.01982.
The lateral line system of fish is sensitive to weak water motions. We recorded from posterior lateral line nerve afferents while stimulating goldfish, Carassius auratus, with unidirectional water flow and with a vortex ring. Posterior lateral line afferents of goldfish were either flow sensitive or flow insensitive. Both types of afferents responded to a vortex ring that passed the fish laterally with one to three reproducible patterns of neural activity, followed by activity patterns that were less reproducible. Using particle image velocimetry, we visualized and quantified the water motions in the vertical plane next to the surface of the fish while recording from lateral line afferents. Early response components correlated with the direction of water motions that occurred at the position of the neuromast recorded from. By contrast, neural activity that occurred after the vortex had passed the fish barely predicted the direction of water motions. These results are in agreement with the known directional sensitivity of hair cells and indicate that fish might be able to extract sensory information from complex stimuli like vortices by comparing the activity of a whole array of neuromasts. The stimulus used in this study is novel to lateral line research and resembles some of the hydrodynamic stimuli that fish might encounter in their natural environments. We expect that by combining naturalistic hydrodynamic stimuli and central nervous recordings, we will learn if and how hydrodynamic feature detection is accomplished by the lateral line system.
鱼类的侧线系统对微弱的水流运动敏感。我们在刺激金鱼(Carassius auratus)时,记录其后侧线神经传入纤维的活动,刺激方式为单向水流和涡环。金鱼的后侧线传入纤维对水流敏感或不敏感。这两种类型的传入纤维对从鱼体侧面经过的涡环都有一到三种可重复的神经活动模式做出反应,随后是不太可重复的活动模式。在记录侧线传入纤维活动时,我们使用粒子图像测速技术对鱼体表面附近垂直平面内的水流运动进行了可视化和量化。早期反应成分与从记录的神经丘位置处发生的水流运动方向相关。相比之下,涡环经过鱼体后出现的神经活动几乎无法预测水流运动的方向。这些结果与已知的毛细胞方向敏感性一致,表明鱼类可能能够通过比较整个神经丘阵列的活动,从诸如涡环等复杂刺激中提取感官信息。本研究中使用的刺激对于侧线研究来说是新颖的,并且类似于鱼类在自然环境中可能遇到的一些流体动力刺激。我们期望通过结合自然主义的流体动力刺激和中枢神经记录,了解侧线系统是否以及如何完成流体动力特征检测。