首页> 外文期刊>Journal of experimental psychology. Animal behavior processes >Simultaneous and sequential choice as a function of reward delay and magnitude: Normative, descriptive And process-based models tested in the European Starling (Sturnus vulgaris)
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Simultaneous and sequential choice as a function of reward delay and magnitude: Normative, descriptive And process-based models tested in the European Starling (Sturnus vulgaris)

机译:同时和顺序选择作为奖励延迟和幅度的函数:在欧洲Star鸟(Sturnus vulgaris)中测试的基于规范,描述性和基于过程的模型

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The authors analyze prevalent theoretical and empirical quantitative models of choice using data from European starlings (Sturnus vulgaris). The different models originate from diverse lines of thinking, including optimal foraging theory, descriptive behavioral analysis, and temporal discounting. The authors also investigate the Sequential Choice Model (SCM) that predicts choice between simultaneous alternatives as a function of behavior in sequential encounters. SCM assumes that simultaneous encounters are rare in nature, where animals often exploit or dismiss single opportunities. Mechanisms of choice adapted for sequential encounters may be evolutionarily stable even if they impose a cost in the rarer simultaneous cases. The best predictive power is achieved by the SCM and by hyperbolic discounting with value (or attractiveness) of each option proportional to reward amount and inversely proportional to the sum of delay to reward plus delay to respond. Choice probability matched the ratio of each option's value to the sum of values of all available options. The good fit of SCM supports the view that choice is driven by mechanisms adapted to sequential, rather than simultaneous encounters with feeding opportunities.
机译:作者使用欧洲八哥(Sturnus vulgaris)的数据分析了流行的理论和经验选择模型。不同的模型源自不同的思维方式,包括最佳觅食理论,描述性行为分析和时间折扣。作者还研究了顺序选择模型(SCM),该模型预测在顺次相遇中作为行为的函数的同时替代项之间的选择。 SCM假设,自然界很少会同时遇见动物,在这里动物经常会利用或消除单个机会。即使在罕见的同时发生情况下会增加成本,适用于顺序遭遇的选择机制也可能在进化上保持稳定。最佳的预测能力是通过供应链管理和双曲线折扣实现的,其中每个选项的价值(或吸引力)与奖励金额成正比,与奖励延迟加响应延迟之和成反比。选择概率使每个选项的价值与所有可用选项的价值之和相匹配。 SCM的良好适应性支持这样一种观点,即选择是由适应顺序的机制驱动的,而不是同时遇到喂食机会的机制。

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