小鸡的音高-亮度交叉模态对应:对先天和习得过程的研究

M. Loconsole, Andrea Gasparini, L. Regolin
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引用次数: 2

摘要

我们的感官不断受到来自各种不同感官形态的大量刺激。为了创建一个连贯的环境表示,我们必须将引用同一对象的各种单模态输入集成到一个单一的多模态表示中。然而,在某些情况下,我们倾向于在没有任何明显原因的情况下结合刺激的某些特性,这是一种称为跨模态对应的现象。例如,我们分别用“Kiki”或“Bouba”的声音来匹配一个尖形或圆形的形状。同样地,我们将左半球与低亮度联系起来,而将右半脑与高亮度联系起来。在其他哺乳动物中也描述了跨模态对应的实例,最近,在鸟类(即家养雏鸟)中报告了空间亮度跨模态对应的实例。在这里,我们研究了3天大的小鸡中存在的音调-亮度交叉模态对应,采用实验方法,利用先天或习得的过程。虽然没有报告这一现象的证据,但我们讨论了统计和结构跨模态对应之间的差异以及环境因素在决定其出现方面的可能作用。此外,我们讨论了不同实验方法的重要性,以研究这种感知现象的不同方面,以达到更深入的理解和揭示先天与习得机制的作用。
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Pitch–Luminance Crossmodal Correspondence in the Baby Chick: An Investigation on Predisposed and Learned Processes
Our senses are constantly reached by a multitude of stimuli from all different sensory modalities. To create a coherent representation of the environment, we must integrate the various unimodal inputs that refer to the same object into a single multimodal representation. In some cases, however, we tend to bind certain properties of the stimuli without any apparent reason, which is a phenomenon named crossmodal correspondence. For instance, we match a spiky or a rounded shape with the sound “Kiki” or “Bouba”, respectively. Similarly, we associate the left hemispace with low luminance and the right one with high luminance. Instances of crossmodal correspondences were described also in other mammals, and recently, a case of space-luminance crossmodal correspondence was reported in birds (i.e., domestic chicks). Here, we investigate the presence of pitch–luminance crossmodal correspondence in three-day-old chicks, employing experimental methods that exploit either predisposed or learned processes. While failing to report evidence for this phenomenon, we discuss the difference between statistical and structural crossmodal correspondences and the possible role of environmental factors in determining their emergence. Moreover, we discuss the importance of the different experimental methodologies to investigate distinct aspects of this perceptual phenomenon to reach a deeper understanding and unveil the role of innate vs. learned mechanisms.
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