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用于快速学习二选一强制选择视觉刺激检测任务的高效训练方案。

Efficient training protocol for rapid learning of the two-alternative forced-choice visual stimulus detection task.

作者信息

Soma Shogo, Suematsu Naofumi, Shimegi Satoshi

机构信息

Laboratory of Cognitive and Behavioral Neuroscience, Graduate School of Medicine, Osaka University, Toyonaka, Osaka, Japan.

出版信息

Physiol Rep. 2014 Jul 3;2(7). doi: 10.14814/phy2.12060. Print 2014 Jul 1.

Abstract

The potential of genetically engineered rodent models has accelerated demand for training procedures of behavioral tasks. Such training is generally time consuming and often shows large variability in learning speed between animals. To overcome these problems, we developed an efficient and stable training system for the two-alternative forced-choice (2AFC) visual stimulus detection task for freely behaving rodents. To facilitate the task learning, we introduced a spout-lever as the operandum and a three-step training program with four ingenuities: (1) a salient stimulus to draw passive attention, (2) a reward-guaranteed trial to keep motivation, (3) a behavior-corrective trial, and (4) switching from a reward-guaranteed trial to a nonguaranteed one to correct behavioral patterns. Our new training system realizes 1-week completion of the whole learning process, during which all rats were able to learn effortlessly the association between (1) lever-manipulation and reward and (2) visual stimulus and reward in a step-by-step manner. Thus, our new system provides an effective and stable training method for the 2AFC visual stimulus detection task. This method should help accelerate the move toward research bridging the visual functions measured in behavioral tasks and the contributing specific neurons/networks that are genetically manipulated or optically controlled.

摘要

基因工程啮齿动物模型的潜力加速了对行为任务训练程序的需求。这种训练通常很耗时,而且动物之间的学习速度往往存在很大差异。为了克服这些问题,我们为自由活动的啮齿动物开发了一种高效且稳定的双选强制选择(2AFC)视觉刺激检测任务训练系统。为了促进任务学习,我们引入了一个喷口杠杆作为操作对象,并设计了一个包含四个巧妙之处的三步训练程序:(1)一个突出的刺激以吸引被动注意力;(2)一个保证奖励的试验以保持动机;(3)一个行为纠正试验;(4)从保证奖励的试验切换到无保证奖励的试验以纠正行为模式。我们的新训练系统实现了整个学习过程在一周内完成,在此期间所有大鼠都能够轻松地逐步学习(1)杠杆操作与奖励之间的关联以及(2)视觉刺激与奖励之间的关联。因此,我们的新系统为2AFC视觉刺激检测任务提供了一种有效且稳定的训练方法。这种方法应该有助于加速朝着将行为任务中测量的视觉功能与经过基因操作或光控的特定神经元/网络联系起来的研究迈进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cdc6/4187546/8ee77255151b/phy2-2-e12060-g1.jpg

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