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The evolution of cerebellum structure correlates with nest complexity

机译:小脑结构的演变与巢的复杂性有关

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摘要

Across the brains of different bird species, the cerebellum varies greatly in the amount of surface folding (foliation). The degree of cerebellar foliation is thought to correlate positively with the processing capacity of the cerebellum, supporting complex motor abilities, particularly manipulative skills. Here, we tested this hypothesis by investigating the relationship between cerebellar foliation and species-typical nest structure in birds. Increasing complexity of nest structure is a measure of a bird's ability to manipulate nesting material into the required shape. Consistent with our hypothesis, avian cerebellar foliation increases as the complexity of the nest built increases, setting the scene for the exploration of nest building at the neural level.
机译:在不同鸟类物种的大脑中,小脑的表面折叠量(叶面)差异很大。小脑叶的程度被认为与小脑的处理能力呈正相关,支持复杂的运动能力,尤其是操纵技能。在这里,我们通过研究小脑叶片与鸟类典型的巢结构之间的关系来检验这一假设。巢结构的复杂性不断提高,是衡量鸟将筑巢材料操纵成所需形状的能力的一种度量。与我们的假设一致,禽小脑叶片的形成随着巢的复杂性的增加而增加,这为在神经层次探索巢的构建奠定了基础。

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