Wu Peng, Zhu Juncai, He Qingzhi, Wang Zhizhong, Shi Li
School of Electrical and Information Engineering, Zhengzhou University, Zhengzhou, 450001, China.
Henan Key Laboratory of Brain Science and Brain-Computer Interface Technology, Zhengzhou, 450001, China.
Anim Cogn. 2025 May 19;28(1):39. doi: 10.1007/s10071-025-01957-y.
As representatives of a basal bird lineage, pigeons have exhibited remarkable visual numerical cognition, comparable even to that of monkeys. Nevertheless, whether visual numerical cognition in pigeons conforms to the Weber-Fechner law remains unknown. To address this, we designed a fully automated apparatus tailored for pigeons and used it to train them to perform a delayed match-to-numerosity task. The results showed that on a linear scale, pigeons represented smaller numerosities with higher precision and larger numerosities with lower precision, exhibiting a numerical magnitude effect. When the linear scale was compressed into a logarithmic scale, this magnitude effect was offset, resulting in similar representational characteristics across different numerosities. This finding suggests that the mental number line of pigeons is logarithmic rather than linear, consistent with the Weber-Fechner law. While biological brains seek precision in representing numerical information, they must also take computational load into account. This representational strategy may be the optimal outcome of the trade-off between computational precision and computational load that biological brains have achieved through long-term evolution.
作为基础鸟类谱系的代表,鸽子展现出了卓越的视觉数字认知能力,甚至可与猴子相媲美。然而,鸽子的视觉数字认知是否符合韦伯 - 费希纳定律仍是未知的。为了解决这个问题,我们设计了一种专门为鸽子量身定制的全自动装置,并利用它训练鸽子执行延迟数字匹配任务。结果表明,在线性尺度上,鸽子对较小数字的表征精度较高,对较大数字的表征精度较低,呈现出数字大小效应。当线性尺度被压缩为对数尺度时,这种大小效应被抵消,不同数字的表征特征变得相似。这一发现表明,鸽子的心理数字线是对数的而非线性的,符合韦伯 - 费希纳定律。虽然生物大脑在表示数字信息时追求精确性,但它们也必须考虑计算负荷。这种表征策略可能是生物大脑通过长期进化在计算精度和计算负荷之间权衡的最优结果。