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斑马鱼幼鱼自发游泳行为中的动作序列——对药物开发的启示。

Action sequencing in the spontaneous swimming behavior of zebrafish larvae - implications for drug development.

机构信息

Integrative Neurophysiology and Neurotechnology, NRC, Department of Experimental Medical Sciences, Lund University, Lund, Sweden.

Mathematics, Centre for Mathematical Sciences, Faculty of Engineering, Lund University, Lund, Sweden.

出版信息

Sci Rep. 2017 Jun 9;7(1):3191. doi: 10.1038/s41598-017-03144-7.

Abstract

All motile organisms need to organize their motor output to obtain functional goals. In vertebrates, natural behaviors are generally composed of a relatively large set of motor components which in turn are combined into a rich repertoire of complex actions. It is therefore an experimental challenge to investigate the organizational principles of natural behaviors. Using the relatively simple locomotion pattern of 10 days old zebrafish larvae we have here characterized the basic organizational principles governing the swimming behavior. Our results show that transitions between different behavioral states can be described by a model combining a stochastic component with a control signal. By dividing swimming bouts into a limited number of categories, we show that similar types of swimming behavior as well as stand-stills between bouts were temporally clustered, indicating a basic level of action sequencing. Finally, we show that pharmacological manipulations known to induce alterations in the organization of motor behavior in mammals, mainly through basal ganglia interactions, have related effects in zebrafish larvae. This latter finding may be of specific relevance to the field of drug development given the growing importance of zebrafish larvae in phenotypic screening for novel drug candidates acting on central nervous system targets.

摘要

所有能动的生物都需要组织其运动输出以实现功能目标。在脊椎动物中,自然行为通常由相对较大的运动组件组成,这些组件又组合成丰富的复杂动作组合。因此,研究自然行为的组织原则是一个实验挑战。在这里,我们使用相对简单的 10 天大的斑马鱼幼虫的运动模式,描述了控制游泳行为的基本组织原则。我们的结果表明,不同行为状态之间的转换可以通过结合随机成分和控制信号的模型来描述。通过将游泳回合划分为有限数量的类别,我们表明类似类型的游泳行为以及回合之间的静止状态在时间上是聚类的,这表明存在基本的动作序列。最后,我们表明,已知在哺乳动物中通过基底神经节相互作用引起运动行为组织改变的药理学处理,在斑马鱼幼虫中具有相关的影响。鉴于斑马鱼幼虫在针对中枢神经系统靶点的新型候选药物的表型筛选中越来越重要,这一发现可能对药物开发领域具有特殊意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/897a/5466685/885d6ca35cb6/41598_2017_3144_Fig1_HTML.jpg

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