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Evolution of the neural basis of consciousness: a bird-mammal comparison

机译:意识神经基础的进化:鸟类与哺乳动物的比较

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The main objective of this essay is to validate some of the principal, currently competing, mammalian consciousness-brain theories by comparing these theories with data on both cognitive abilities and brain organization in birds. Our argument is that, given that multiple complex cognitive functions are correlated with presumed consciousness in mammals, this correlation holds for birds as well. Thus, the neuroanatomical features of the fore-brain common to both birds and mammals may be those that are crucial to the generation of both complex cognition and consciousness. The general conclusion is that most of the consciousness-brain theories appear to be valid for the avian brain. Even though some specific homologies are unresolved, most of the critical structures presumed necessary for consciousness in mammalian brains have clear homologues in avian brains. Furthermore, considering the fact that the reptile-bird brain transition shows more structural continuity than the stem amniote-mammalian transition, the line drawn at the origin of mammals for consciousness by several of the theorists seems questionable. An equally important point is that consciousness cannot be ruled out in the absence of complex cognition; it may in fact be the case that consciousness is a necessary prerequisite for complex cognition. BioEssays 27:923-936,2005. (c) 2005 Wiley Periodicals, Inc.
机译:本文的主要目的是通过将哺乳动物意识-大脑理论与鸟类认知能力和大脑组织的数据进行比较,验证这些理论的一些主要的、目前正在竞争的哺乳动物意识-大脑理论。我们的论点是,鉴于多种复杂的认知功能与哺乳动物的假定意识相关,这种相关性也适用于鸟类。因此,鸟类和哺乳动物共同的前脑神经解剖学特征可能是那些对复杂认知和意识的产生至关重要的特征。一般的结论是,大多数意识-大脑理论似乎对鸟类大脑有效。尽管一些特定的同源性尚未解决,但哺乳动物大脑中意识所必需的大多数关键结构在鸟类大脑中都有明确的同源物。此外,考虑到爬行动物-鸟类大脑的转变比茎羊膜动物-哺乳动物的转变显示出更多的结构连续性,一些理论家在哺乳动物意识的起源上划定的界线似乎值得怀疑。同样重要的一点是,在没有复杂认知的情况下,不能排除意识;事实上,意识可能是复杂认知的必要前提。生物散文 27:923-936,2005.(c) 2005年Wiley Periodicals, Inc.

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