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Are lizards capable of inhibitory control? Performance on a semi-transparent version of the cylinder task in five species of Australian skinks

机译:蜥蜴是否能够抑制控制? 在五种澳大利亚Skinks中的半透明版上透明版的性能

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Inhibitory control, the inhibition of prepotent actions, is essential for higher-order cognitive processes such as planning, reasoning, and self-regulation. Individuals and species differ in inhibitory control. Identifying what influences inhibitory control ability within and between species is key to understanding how it evolved. We compared performance in the cylinder task across five lizard species: tree skinks (Egernia striolata), gidgee skinks (Egernia stokesii), eastern blue-tongue skinks (Tiliqua s. scincoides), sleepy lizards (Tiliqua r. asper), and eastern water skinks (Eulamprus quoyii). In our task, animals had to inhibit the prepotent motor response of directly approaching a reward placed within a semi-transparent mesh cylinder and instead reach in through the side openings. Additionally, in three lizard species, we compared performance in the cylinder task to reversal learning to determine the task specificity of inhibitory ability. Within species, neither sex, origin, body condition, neophobia, nor pre-experience with other cognitive tests affected individual performance. Species differed in motor response inhibition: Blue-tongue skinks made fewer contacts with the semi-transparent cylinder wall than all other species. Blue-tongue skinks also had lower body condition than the other species which suggest motivation as the underlying cause for species differences in task performance. Moreover, we found no correlation between inhibitory ability across different experiments. This is the first study comparing cylinder task performance among lizard species. Given that inhibitory control is probably widespread in lizards, motor response inhibition as exercised in the cylinder task appears to have a long evolutionary history and is likely fundamental to survival and fitness. Significance The study of lizard cognition is receiving increasing attention. Lizards are a diverse group with a wide range of ecological attributes and represent a model system through which we can test a wide range of hypotheses relating to cognitive evolution. Furthermore, considering their evolutionary history, studying non-avian reptile cognition can help understand the evolution of different cognitive abilities including inhibitory control. Here, we provide a comparison of inhibitory control ability in five lizard species. Consequently, we are able to, firstly, validate a method (the cylinder task) initially developed for the use in mammals and birds, for use in lizards, and secondly, collect valuable data on inhibitory control in a poorly studied group with respect to cognitive ability. Our study suggests non-cognitive factors as a major influence on cylinder task performance, which is in agreement with previous studies of other vertebrates.
机译:抑制控制,抑制良好作用,对于规划,推理和自我调节等高阶认知过程至关重要。个体和物种在抑制控制中不同。确定物种内部和物种之间的抑制控制能力的关键是理解它的演变。我们比较了五种蜥蜴种类的气缸任务中的表现:树脂(Egernia Stroiolata),盖尼斯Skinks(Egernia Stokesii),东部蓝色舌头Skinks(Tiliqua s. scincoides),困倦的蜥蜴(Tiliqua r.asper)和东部水skinks(eulamprus quoyii)。在我们的任务中,动物必须抑制直接接近放置在半透明网状滚筒内的奖励的奖励,而是通过侧开口伸出的奖励。此外,在三种蜥蜴物种中,我们将汽缸任务的性能进行了比较以反转学习,以确定抑制能力的任务特异性。在物种中,既不是性,起源,身体状况,新闻恐惧症,也不是其他认知测试的预经验影响了个性的性能。电机响应抑制等物种不同:蓝舌外,与所有其他物种的半透明圆柱形墙较少。蓝舌Skinks也具有比其他物种的较低的身体状况,这些物种表达了任务表现的物种差异的潜在原因。此外,我们发现不同实验中的抑制能力之间没有相关性。这是第一项研究蜥蜴物种之间的汽缸任务性能的研究。鉴于抑制控制可能在蜥蜴中可能普及,在汽缸任务中行使的电动机响应抑制似乎具有漫长的进化历史,可能是生存和健康的基础。重要性蜥蜴认知的研究正在接受越来越多的关注。蜥蜴是一个不同的集团,具有广泛的生态属性,代表了一个模型系统,我们可以通过它测试与认知演化有关的广泛假设。此外,考虑到他们的进化史,研究非禽爬行动物认知可以帮助了解不同认知能力的演变,包括抑制控制。在这里,我们提供五种蜥蜴物种中抑制控制能力的比较。因此,我们能够首先验证最初开发用于哺乳动物和鸟类的方法(气缸任务),用于蜥蜴,其次,收集关于认知的抑制控制中的有价值的数据能力。我们的研究表明,非认知因素作为气缸任务表现的主要影响,这与对其他脊椎动物的先前研究一致。

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