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Does absolute brain size really predict self-control? Hand-tracking training improves performance on the A-not-B task

机译:绝对大脑的大小真的可以预测自我控制吗?手动跟踪培训可提高a-not-B任务的性能

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摘要

Large-scale, comparative cognition studies are set to revolutionize the way we investigate and understand the evolution of intelligence. However, the conclusions reached by such work have a key limitation: the cognitive tests themselves. If factors other than cognition can systematically affect the performance of a subset of animals on these tests, we risk drawing the wrong conclusions about how intelligence evolves. Here, we examined whether this is the case for the A-not-B task, recently used by MacLean and co-workers to study self-control among 36 different species. Non-primates performed poorly on this task; possibly because they have difficulty tracking the movements of a human demonstrator, and not because they lack self-control. To test this, we assessed the performance of New Caledonian crows on the A-not-B task before and after two types of training. New Caledonian crows trained to track rewards moved by a human demonstrator were more likely to pass the A-not-B test than birds trained on an unrelated choice task involving inhibitory control. Our findings demonstrate that overlooked task demands can affect performance on a cognitive task, and so bring into question MacLean’s conclusion that absolute brain size best predicts self-control.
机译:大规模的比较认知研究旨在彻底改变我们研究和理解智力发展的方式。但是,这样的工作得出的结论有一个关键的局限性:认知测试本身。如果认知以外的因素可以系统地影响这些测试中的一部分动物的表现,我们可能会得出关于智力如何进化的错误结论。在这里,我们检查了Macnotan及其同事最近用于研究36个不同物种之间的自我控制的A-not-B任务是否如此。非灵长类动物在这项任务上表现不佳;可能是因为他们难以追踪示威者的动作,而不是因为他们缺乏自我控制能力。为了测试这一点,我们评估了两种训练前后新喀里多尼亚乌鸦在A-not-B任务上的表现。经过训练以追踪人类示威者的奖励的新喀里多尼亚乌鸦比接受涉及抑制控制的无关选择任务训练的鸟类更有可能通过A-not-B测试。我们的研究结果表明,被忽视的任务需求会影响认知任务的表现,因此使MacLean得出结论,即绝对大脑大小最能预测自我控制。

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