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Age effects on transfer index performance and executive control in baboons (Papio papio)

机译:年龄对狒狒(Papio papio)的传递指数性能和执行控制的影响

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摘要

Reversal performance in the transfer index (TI) task is known to improve from prosimians to apes, suggesting that this task is a marker of cognitive evolution within the primate taxa (Rumbaugh, ). However, the cognitive processes recruited by this task remain unclear. In the present study, 19 socially-housed baboons (Papio papio) from 1.6 to 14.3 years of age were tested on a computerized version of the TI task, using an automated self-testing procedure. Age was a significant factor in the level of success, with the younger baboons outperforming the adults. The younger baboons learned the pre-reversal discrimination faster and improved their post-reversal performance more rapidly than adult baboons. As 17 of these baboons had already been tested in previous studies on inhibitory control and cognitive flexibility tasks, comparison across tasks provide indicators of the underlying cognitive processes. Age variations in performance were similar between the TI task and in an adaptation of the Wisconsin Card Sorting Task (WCST) measuring cognitive flexibility (Bonté et al., ). This contrasts previous results from a task requiring motor inhibitory control (Fagot et al., ). Therefore, these findings suggest that cognitive flexibility was a central component of the cognitive system that evolved within non-human primates. They also implicate a decline in executive control with age that begins during early adulthood in this baboon species.
机译:已知转移指数(TI)任务中的逆转性能从猿猴到猿都有改善,这表明该任务是灵长类动物类群内认知进化的标志(Rumbaugh,)。但是,这项任务招募的认知过程仍然不清楚。在本研究中,使用自动自我测试程序在计算机版的TI任务中测试了19例1.6至14.3岁的社会狒狒(Papio papio)。年龄是成功水平的重要因素,年轻的狒狒的表现要优于成人。与成年狒狒相比,年轻的狒狒更快地学会了逆转前的歧视,并更快地提高了逆转后的表现。由于先前已经在抑制控制和认知灵活性任务的研究中对这些狒狒中的17个进行了测试,因此对任务之间的比较提供了潜在认知过程的指标。在TI任务之间以及在对适应性认知能力进行测量的威斯康星卡片分类任务(WCST)的改编中,性能的年龄差异是相似的(Bontéet al。,)。这与以前需要运动抑制控制的结果相反(Fagot等,)。因此,这些发现表明,认知灵活性是在非人类灵长类动物内部进化的认知系统的重要组成部分。他们还暗示,这种狒狒物种的成年早期开始,随着年龄的增长,执行控制的下降。

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