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竞技场旋转产生的惯性刺激对于主动回避任务的习得很重要。

Inertial stimuli generated by arena rotation are important for acquisition of the active place avoidance task.

机构信息

Institute of Physiology, Academy of Sciences of the Czech Republic, Videnska 1083, 142 20, Praha 4, Czech Republic.

出版信息

Behav Brain Res. 2011 Jan 1;216(1):207-13. doi: 10.1016/j.bbr.2010.07.038. Epub 2010 Aug 13.

Abstract

The active place avoidance task is used for testing cognitive abilities in rats. A rat, placed on a rotating circular arena, should avoid an unmarked sector defined with respect to stable extra-arena cues. We hypothesized that the inertial stimuli generated by the arena rotation may contribute to the performance in the task. These stimuli provide permanent information to the rat concerning changes in its position with respect to the extra-arena cues, it means to the reference frame in which the to-be-avoided sector is defined. To test the hypothesis, we trained one group of rats on a stable arena while extra-arena cues rotated around the arena. This eliminated the inertial stimuli generated by the arena rotation while preserving other aspects of the task. Six out of seven rats from this group did not learn this modified task. The remaining rat learned it equally well as rats from a control group learned the standard active place avoidance task. After six days of training, we changed the tasks between the groups. The control rats solved the modified task as well as the standard task. We conclude that the inertial stimuli generated by the arena rotation are important for acquisition of the active place avoidance task but not for performance once the task has been mastered. We suggest that rats must perceive the distal extra-arena cues as stable in order to associate the position of the to-be-avoided sector with these cues.

摘要

主动回避任务用于测试大鼠的认知能力。将大鼠放置在旋转的圆形竞技场中,大鼠应避免标记有相对于稳定的场外线索的未标记扇区。我们假设竞技场旋转产生的惯性刺激可能有助于任务表现。这些刺激为大鼠提供了关于其相对于场外线索位置变化的永久性信息,即关于要避免的扇区定义的参考框架的信息。为了检验这一假设,我们在稳定的竞技场中训练了一组大鼠,而场外线索则围绕竞技场旋转。这消除了竞技场旋转产生的惯性刺激,同时保留了任务的其他方面。这组大鼠中有 7 只中的 6 只没有学会这个经过修改的任务。剩下的一只老鼠和对照组的老鼠一样,很好地学会了标准的主动回避任务。经过六天的训练,我们在两组之间改变了任务。对照组的老鼠很好地解决了经过修改的任务和标准任务。我们得出结论,竞技场旋转产生的惯性刺激对于主动回避任务的习得很重要,但对于任务掌握后的表现则不重要。我们认为,大鼠必须将远距离的场外线索感知为稳定的,以便将待避免的扇区的位置与这些线索联系起来。

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