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The impact of asymmetrical light input on cerebral hemispheric specialization and interhemispheric cooperation

机译:不对称光输入对大脑半球专长和半球合作的影响

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Hemispheric specialization potentially provides evolutionary advantages by enhancing cognitive capacities. However, separation of function might be advantageous only with the presence of commissural systems allowing for efficient information exchange and cooperation between the hemispheres. Here we investigate hemispheric cooperation in pigeons as they possess an asymmetrically organized visual system that develops in response to biased ontogenetic light stimulation. This allows comparison of the integration capacities of lateralized (light-incubated) and non-lateralized (dark-incubated) animals. We show that pigeons integrate information learnt separately with each hemisphere when confronted with a transitive reasoning task that they cannot solve with the knowledge of one hemisphere alone. Impairments in dark-incubated birds demonstrate that this ability depends on asymmetrical embryonic light stimulation. Our study provides for the first time direct evidence that lateralized environmental experience not only induces hemispheric specialization, but also affects the efficiency of interhemispheric crosstalk. Environmental factors can influence the tight interplay between the hemispheres, which in turn determines cognitive abilities.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:半球专业化可能通过增强认知能力来提供进化优势。但是,功能分离只有在连合系统存在的情况下才是有利的,连合系统允许在半球之间进行有效的信息交换和合作。在这里,我们研究了鸽子的半球合作,因为它们拥有不对称组织的视觉系统,该系统可以响应有偏的个体光刺激而发展。这允许比较侧化(光培养)和非侧化(黑暗培养)动物的整合能力。我们展示了鸽子在面对传递推理任务时所整合的信息,这些信息是每个半球单独学习的信息,而仅凭一个半球的知识就无法解决。在黑暗中孵化的鸟类的损伤表明,这种能力取决于不对称的胚胎光刺激。我们的研究首次提供直接证据,证明环境化的环境体验不仅会诱发半球专业化,还会影响半球间串扰的效率。环境因素会影响半球之间的紧密相互作用,进而决定认知能力。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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