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Cats Parallel Great Apes and Corvids in Motor Self-Regulation – Not Brain but Material Size Matters

机译:猫在运动自我调节方面平行于大猿猴和柯宾犬–不是大脑而是物质大小

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摘要

The inhibition of unproductive motor movements is regarded as a fundamental cognitive mechanism. Recently it has been shown that species with large absolute brain size or high numbers of pallial neurons, like great apes and corvids, show the highest performance on a task purportedly measuring this mechanism: the cylinder task. In this task the subject must detour a perpendicularly oriented transparent cylinder to reach a reward through a side opening, instead of directly reaching for it and bumping into the front, which is regarded as an inhibitory failure. Here we test domestic cats, for the first time, and show that they can reach the same levels as great apes and corvids on this task, despite having much smaller brains. We tested subjects with apparatuses that varied in size (cylinder length and diameter) and material (glass or plastic), and found that subjects performed best on the large cylinders. As numbers of successes decreased significantly when the cylinders were smaller, we conducted additionally two experiments to discern which properties (length of the transparent surface, goal distance from the surface, size of the side opening) affects performance. We conclude that sensorimotor requirements, which differ between species, may have large impact on the results in such seemingly simple and apparently comparable tests. However, we also conclude that cats have comparably high levels of motor self-regulation, despite the differences between tests.
机译:抑制非生产性运动的运动被认为是基本的认知机制。最近,有研究表明,在所谓的测量圆柱体任务的任务中,具有较大的绝对大脑大小或大量的睑神经元的物种(如大猿和弯曲体)表现出最高的性能。在此任务中,受试者必须绕过垂直定向的透明圆柱体以通过侧面开口获得奖励,而不是直接伸直并撞到前方,这被认为是抑制性失败。在这里,我们首次对家猫进行了测试,结果表明,尽管它们的大脑小得多,但它们可以达到与大型猿猴和猛禽相同的水平。我们用尺寸(圆柱体长度和直径)和材料(玻璃或塑料)不同的设备测试了受试者,发现受试者在大型圆柱体上表现最佳。当圆柱体较小时,成功次数显着减少,因此我们另外进行了两个实验,以识别哪些属性(透明表面的长度,距表面的目标距离,侧面开口的大小)会影响性能。我们得出结论,在这种看似简单且看似可比的测试中,不同物种之间的感觉运动要求可能会对结果产生重大影响。但是,我们也得出结论,尽管测试之间存在差异,但猫的运动自我调节水平相对较高。

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