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How asymmetry in animals starts

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  • GÃœNTÃœRKÃœN, ONUR

Abstract

This review aims to present a speculation about mechanisms that shape the brains of humans and other animals into an asymmetrical organization. To this end, I will proceed in two steps: first, I want to recapitulate evidence from various experiments that show that some but not all asymmetries of the avian brain result from a prehatch light stimulation asymmetry. This should make it clear that avian embryos have a genetic predisposition to turn their head to the right. This results in a higher level of prehatch light stimulation of their right eye. The concomitant left–right difference in sensory input alters the brain circuits of the animal for the entire lifespan in a lateralized way. In the second part of the paper I will present evidence that some of the asymmetries of the human brain take a similar ontogenetic path as those observed in birds. This review provides the evidence that critical ontogenetic processes discovered in animal models could also be involved in the ontogeny of human cerebral asymmetries.

Suggested Citation

  • Gãœntãœrkãœn, Onur, 2005. "How asymmetry in animals starts," European Review, Cambridge University Press, vol. 13(S2), pages 105-118, October.
  • Handle: RePEc:cup:eurrev:v:13:y:2005:i:s2:p:105-118_00
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