Rugani Rosa, Macchinizzi Matteo, Zhang Yujia, Regolin Lucia
Department of General Psychology, University of Padua, Padova, Italy.
Department of Psychology, The Ohio State University, Columbus, United States.
Elife. 2025 Sep 9;14:RP106356. doi: 10.7554/eLife.106356.
Humans order numerosity along a left-to-right mental number line (MNL), traditionally considered culturally rooted. Yet, some species at birth show spatial-numerical associations (SNA), suggesting neural origins. Various accounts link SNA to brain lateralization but lack evidence. We investigated brain lateralization effects on numerical spatialization in 100 newborn domestic chicks. In ovo light exposure yielded strongly lateralized brains in half the chicks and weakly lateralized in the other half. Chicks learned to select the 4th item in a sagittal array. At the test, the array was rotated 90°, with left and right 4th items correct. Strongly lateralized chicks outperformed weakly lateralized ones when ordinal and spatial cues were reliable (experiment 1), but not with unreliable spatial cues (experiment 2). Moreover, only strongly lateralized chicks showed left-to-right directionality, suggesting the right hemisphere's key role in integrating spatial and numerical cues. We demonstrate that brain lateralization is fundamental for developing a left-to-right oriented SNA.
人类沿着从左到右的心理数字线(MNL)对数量进行排序,传统上认为这是文化根源所致。然而,一些物种在出生时就表现出空间数字关联(SNA),这表明其具有神经起源。各种说法将SNA与大脑偏侧化联系起来,但缺乏证据。我们研究了大脑偏侧化对100只新生家鸡数字空间化的影响。在胚胎期进行光照,使得一半雏鸡的大脑具有强烈的偏侧化,另一半则偏侧化较弱。雏鸡学会在矢状排列中选择第4个物品。在测试时,排列旋转90°,左右两边的第4个物品都是正确的。当顺序和空间线索可靠时(实验1),偏侧化强烈的雏鸡表现优于偏侧化较弱的雏鸡,但在空间线索不可靠时(实验2)则不然。此外,只有偏侧化强烈的雏鸡表现出从左到右的方向性,这表明右半球在整合空间和数字线索方面起关键作用。我们证明,大脑偏侧化对于形成从左到右定向的SNA至关重要。