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Integrating brain behavior and phylogeny to understand the evolution of sensory systems in birds

机译:整合大脑行为和系统发育以了解鸟类感觉系统的进化

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摘要

The comparative anatomy of sensory systems has played a major role in developing theories and principles central to evolutionary neuroscience. This includes the central tenet of many comparative studies, the principle of proper mass, which states that the size of a neural structure reflects its processing capacity. The size of structures within the sensory system is not, however, the only salient variable in sensory evolution. Further, the evolution of the brain and behavior are intimately tied to phylogenetic history, requiring studies to integrate neuroanatomy with behavior and phylogeny to gain a more holistic view of brain evolution. Birds have proven to be a useful group for these studies because of widespread interest in their phylogenetic relationships and a wealth of information on the functional organization of most of their sensory pathways. In this review, we examine the principle of proper mass in relation differences in the sensory capabilities among birds. We discuss how neuroanatomy, behavior, and phylogeny can be integrated to understand the evolution of sensory systems in birds providing evidence from visual, auditory, and somatosensory systems. We also consider the concept of a “trade-off,” whereby one sensory system (or subpathway within a sensory system), may be expanded in size, at the expense of others, which are reduced in size.
机译:感觉系统的比较解剖学在发展进化神经科学的核心理论和原理中发挥了重要作用。这包括许多比较研究的中心原则,即适当质量的原则,该原则指出神经结构的大小反映了其处理能力。然而,感觉系统内结构的大小并不是感觉进化中唯一的显着变量。此外,大脑和行为的进化与系统进化史密切相关,需要进行研究以将神经解剖学与行为和系统进化相结合,以获得更全面的大脑进化观。鸟类已被证明是这些研究的有用组,因为人们对它们的系统发生关系产生了广泛的兴趣,并获得了有关其大多数感觉途径的功能组织的大量信息。在这篇综述中,我们研究了鸟类之间感觉能力之间关系差异的适当质量原理。我们讨论如何将神经解剖,行为和系统发育整合在一起,以了解鸟类的感觉系统的演变,从而提供视觉,听觉和体感系统的证据。我们还考虑了“权衡”的概念,即一个感官系统(或感官系统内的子路径)的尺寸可以扩大,而其他的则以减小尺寸为代价。

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