首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Operant behavior can be triggered by the position of the rat relative to objects rotating on an inaccessible platform
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Operant behavior can be triggered by the position of the rat relative to objects rotating on an inaccessible platform

机译:老鼠相对于在无法接近的平台上旋转的物体的位置可以触发操作行为

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摘要

The present study describes a task testing the ability of rats to trigger operant behavior by their relative spatial position to inaccessible rotating objects. Rats were placed in a Skinner box with a transparent front wall through which they could observe one or two adjacent objects fixed on a slowly rotating arena (d = 1 m) surrounded by an immobile black cylinder. The direction of arena rotation was alternated at a sequence of different time intervals. Rats were reinforced for the first bar-press that was emitted when a radius separating the two adjacent objects or dividing a single object into two halves (pointing radius) entered a 60° sector of its circular trajectory defined with respect to the stationary Skinner box (reward sector). Well trained rats emitted 62.1 ± 3.6% of responses in a 60° sector preceding the reward sector and in the first 30° of the reward sector. Response rate increased only when the pointing radius was approaching the reward sector, regardless of the time elapsed from the last reward. In the extinction session, when no reward was delivered, rats responded during the whole passage of the pointing radius through the former reward sector and spontaneously decreased responding after the pointing radius left this area. This finding suggests that rats perceived the reward sector as a continuous single region. The same results were obtained when the Skinner box with the rat was orbiting around the immobile scene. It is concluded that rats can recognize and anticipate their position relative to movable objects.
机译:本研究描述了一项任务,即通过大鼠相对于无法接近的旋转物体的相对空间位置来测试大鼠触发操作行为的能力。将大鼠放置在带有透明前壁的Skinner盒子中,通过它们可以观察到一个或两个相邻的物体,这些物体固定在一个缓慢旋转的竞技场(d = 1 m)上,该竞技场由固定的黑色圆柱体包围。竞技场旋转的方向以一系列不同的时间间隔交替进行。第一次压条强化了老鼠,当将两个相邻物体分开或将一个物体分成两半(指向半径)的半径进入相对于静止Skinner框定义的圆形轨迹的60°扇区时发出的奖励部门)。受过良好训练的大鼠在奖励扇区之前的60°扇区和奖励扇区的前30°发出62.1±3.6%的响应。响应率仅在指向半径接近奖励扇区时才增加,而不管从上次奖励开始经过的时间如何。在灭绝阶段,当没有给予任何奖励时,大鼠在整个指点半径通过前一个奖励扇形的过程中做出反应,并在指点半径离开该区域后自发降低响应。这一发现表明,老鼠将奖励部门视为连续的单个区域。当Skinner盒子和老鼠在不动的场景中旋转时,获得了相同的结果。结论是,大鼠可以识别并预测其相对于可移动物体的位置。

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