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Younger apes and human children plan their moves in a maze task

机译:年幼的猿猴和人类儿童在迷宫任务中计划行动

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Planning defined as the predetermination of a sequence of actions towards some goal is crucial for complex problem solving. To shed light on the evolution of executive functions, we investigated the ontogenetic and phylogenetic origins of planning. Therefore, we presented all four great apes species (N = 12) as well as 4- and 5-year-old human preschoolers (N = 24) with a vertical maze task. To gain a reward placed on the uppermost level of the maze, subjects had to move the reward to the bottom through open gaps situated at each level of the maze. In total, there were ten gaps located over three of the maze's levels, and free passage through these gaps could be flexibly blocked using multiple traps. Due to the decision tree design of the maze, the subjects had to plan their actions depending on the trap configuration up to two steps ahead to successfully retrieve the reward. We found that (1) our measure of planning was negatively correlated with age in nonhuman apes, (2) younger apes as well as 5-year-old children planned their moves up to two steps ahead whereas 4-year-olds were limited to plan one step ahead, and (3) similar performance but different underlying limitations between apes and children. Namely, while all species of nonhuman apes were limited by a lack of motor control, human children exhibited a shortage in shifting their attention across a sequence of subgoals.
机译:将计划定义为针对某个目标采取一系列行动的先决条件,这对于解决复杂的问题至关重要。为了阐明执行功能的演变,我们研究了计划的本体和系统发育起源。因此,我们提出了全部四种大猿类(N = 12)以及4岁和5岁的人类学龄前儿童(N = 24),它们具有垂直迷宫任务。为了获得位于迷宫最上层的奖励,受试者必须通过位于迷宫每层上的开放间隙将奖励移到底部。总体上,在三个迷宫的高度上有十个缝隙,可以使用多个陷阱灵活地阻止这些缝隙的自由通过。由于迷宫的决策树设计,受试者必须根据陷阱配置来计划他们的行动,最多要提前两个步骤才能成功获得奖励。我们发现(1)非人猿的计划量度与年龄呈负相关;(2)年幼的猿猴和5岁的孩子计划将自己的行动向前推进两步,而4岁的人则被限制在计划提前一步,并且(3)猿和儿童之间的表现相似,但潜在的限制有所不同。即,尽管所有非人类猿类都受到缺乏运动控制的限制,但人类儿童却表现出缺乏将注意力转移到一系列亚目标上的不足。

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