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Pigeons wait-time responses to transitions in interfood-interval duration: Another look at cyclic schedule performance

机译:鸽子对食物间隔时间变化的等待时间响应:循环调度性能的另一种观察

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摘要

Recent developments reveal that animals can rapidly learn about intervals of time. We studied the nature of this fast-acting process in two experiments. In Experiment 1 pigeons were exposed to a modified fixed-time schedule, in which the time between food rewards (interfood interval) changed at an unpredictable point in each session, either decreasing from 15 to 5 s (step-down) or increasing from 15 to 45 s (step-up). The birds were able to track under both conditions by producing postreinforcement wait times proportional to the preceding interfood-interval duration. However, the time course of responding differed: Tracking was apparently more gradual in the step-up condition. Experiment 2 studied the effect of having both kinds of transitions within the same session by exposing pigeons to a repeating (cyclic) sequence of the interfood-interval values used in Experiment 1. Pigeons detected changes in the input sequence of interfood intervals, but only for a few sessions—discrimination worsened with further training. The dynamic effects we observed do not support a linear waiting process of time discrimination, but instead point to a timing mechanism based on the frequency and recency of prior interfood intervals and not the preceding interfood interval alone.
机译:最近的发展表明,动物可以迅速了解时间间隔。我们通过两个实验研究了这种快速作用过程的性质。在实验1中,将鸽子置于修改后的固定时间表中,在该时间表中,每次会话之间的奖励间隔时间(间隔间隔)在不可预测的时间点改变,从15秒减少到5秒(递减)或从15秒增加持续45秒(升压)。通过产生与前一次食物间隔间隔持续时间成比例的补强后等待时间,这些鸟类能够在两种情况下进行追踪。但是,响应的时间过程有所不同:在提升条件下,跟踪显然更为渐进。实验2通过将鸽子暴露于实验1中使用的食物间隔间隔值的重复(循环)序列,研究了在同一会话中同时具有两种转换的效果。鸽子检测到食物间隔间隔的输入序列发生了变化,但仅针对几节课—歧视随着进一步的培训而恶化。我们观察到的动态效果不支持时间辨别的线性等待过程,而是指向基于先前食物间隔时间而非单独食物间隔时间和频率的计时机制。

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