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小龙虾(奥氏原螯虾)的操作性回避学习:计算行为学与自动化学习范式的发展

Operant avoidance learning in crayfish, Orconectes rusticus: Computational ethology and the development of an automated learning paradigm.

作者信息

Bhimani Rohan, Huber Robert

机构信息

J.P. Scott Center for Neuroscience, Mind & Behavior, Department of Biological Sciences, Bowling Green State University, Life Sciences Building, Bowling Green, OH, 43403, USA.

Radcliffe Institute for Advanced Study, Harvard University, Cambridge, MA, 02138, USA.

出版信息

Learn Behav. 2016 Sep;44(3):239-49. doi: 10.3758/s13420-015-0205-y.

Abstract

Research in crustaceans offers a valuable perspective for studying the neural implementation of conserved behavioral phenomena, including motivation, escape, aggression, and drug-sensitive reward. The present work adds to this literature by demonstrating that crayfish successfully learn to respond to spatially contingent cues. An integrated video-tracking system automatically delivered a mild electric shock when a test animal entered or remained on a substrate paired with punishment. Following a few instances of shock delivery, crayfish quickly learned to avoid these areas. Comparable changes in substrate preference were not exhibited by yoked controls, but locomotion differed significantly from both pre-conditioning levels and from those of their masters receiving shock in a contingent fashion. The results of this work provide valuable insights into the principles governing avoidance learning in an invertebrate system and provide a behavioral template for exploring the neural changes during associative learning. Serving as a case study, this project introduces a new computer framework for the automated control of learning paradigms. Based on routines contained within the JavaGrinders library (free download at iEthology.com), it integrates real-time video tracking with robotic interfaces, and provides a suitable framework for implementing automated learning paradigms.

摘要

对甲壳类动物的研究为研究包括动机、逃避、攻击和药物敏感奖励等保守行为现象的神经实现提供了有价值的视角。目前的工作通过证明小龙虾成功学会对空间相关线索做出反应,为这一文献增添了内容。一个集成的视频跟踪系统在实验动物进入或停留在与惩罚配对的基质上时自动施加轻微电击。经过几次电击后,小龙虾很快学会避开这些区域。被束缚的对照组没有表现出类似的底物偏好变化,但它们的运动与预处理水平以及以偶然方式接受电击的对照组有显著差异。这项工作的结果为无脊椎动物系统中回避学习的原理提供了有价值的见解,并为探索联想学习过程中的神经变化提供了行为模板。作为一个案例研究,该项目引入了一个用于自动控制学习范式的新计算机框架。基于JavaGrinders库(可在iEthology.com免费下载)中包含的例程,它将实时视频跟踪与机器人接口集成在一起,并为实现自动学习范式提供了一个合适的框架。

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