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Rheotaxis of Larval Zebrafish: Behavioral Study of a Multi-Sensory Process

机译:幼虫斑马鱼的流变行为:多感官过程的行为研究。

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摘要

Awake animals unceasingly perceive sensory inputs with great variability of nature and intensity, and understanding how the nervous system manages this continuous flow of diverse information to get a coherent representation of the environment is arguably a central question in systems neuroscience. Rheotaxis, the ability shared by most aquatic species to orient toward a current and swim to hold position, is an innate and robust multi-sensory behavior that is known to involve the lateral line and visual systems. To facilitate the neuroethological study of rheotaxic behavior in larval zebrafish we developed an assay for freely swimming larvae that allows for high experimental throughtput, large statistic and a fine description of the behavior. We show that there exist a clear transition from exploration to counterflow swim, and by changing the sensory modalities accessible to the fishes (visual only, lateral line only or both) and comparing the swim patterns at different ages we were able to detect and characterize two different mechanisms for position holding, one mediated by the lateral line and one mediated by the visual system. We also found that when both sensory modalities are accessible the visual system overshadows the lateral line, suggesting that at the larval stage the sensory inputs are not merged to finely tune the behavior but that redundant information pathways may be used as functional fallbacks.
机译:觉醒的动物不断感知自然界和强度的巨大变化的感觉输入,而了解神经系统如何管理不断变化的各种信息流以获得一致的环境表示,可以说是系统神经科学的中心问题。流变性是大多数水生物种对水流定向并游动以保持位置的能力,是一种先天性和强健的多感官行为,已知涉及侧线和视觉系统。为促进幼虫斑马鱼流变行为的神经行为学研究,我们开发了一种自由游泳幼虫的测定方法,该方法可实现较高的实验通量,较大的统计量以及对行为的良好描述。我们表明,存在着从探索到逆流游泳的明确过渡,并且通过改变鱼类可利用的感觉方式(仅视觉,仅侧向线或两者)并比较不同年龄的游泳方式,我们能够发现并表征两种位置保持的不同机制,一种由侧线介导,一种由视觉系统介导。我们还发现,当两种感觉模式都可访问时,视觉系统会遮盖侧线,这表明在幼体阶段,感觉输入并未合并以精确调整行为,但多余的信息路径可用作功能后备。

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