Literature DB >> 12700818

One hundred million years of interhemispheric communication: the history of the corpus callosum.

F Aboitiz1, J Montiel.   

Abstract

Analysis of regional corpus callosum fiber composition reveals that callosal regions connecting primary and secondary sensory areas tend to have higher proportions of coarse-diameter, highly myelinated fibers than callosal regions connecting so-called higher-order areas. This suggests that in primary/secondary sensory areas there are strong timing constraints for interhemispheric communication, which may be related to the process of midline fusion of the two sensory hemifields across the hemispheres. We postulate that the evolutionary origin of the corpus callosum in placental mammals is related to the mechanism of midline fusion in the sensory cortices, which only in mammals receive a topographically organized representation of the sensory surfaces. The early corpus callosum may have also served as a substrate for growth of fibers connecting higher-order areas, which possibly participated in the propagation of neuronal ensembles of synchronized activity between the hemispheres. However, as brains became much larger, the increasingly longer interhemispheric distance may have worked as a constraint for efficient callosal transmission. Callosal fiber composition tends to be quite uniform across species with different brain sizes, suggesting that the delay in callosal transmission is longer in bigger brains. There is only a small subset of large-diameter callosal fibers whose size increases with increasing interhemispheric distance. These limitations in interhemispheric connectivity may have favored the development of brain lateralization in some species like humans.

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Year:  2003        PMID: 12700818     DOI: 10.1590/s0100-879x2003000400002

Source DB:  PubMed          Journal:  Braz J Med Biol Res        ISSN: 0100-879X            Impact factor:   2.590


  97 in total

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4.  The corpus callosum in primates: processing speed of axons and the evolution of hemispheric asymmetry.

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5.  Regional Values of Diffusional Kurtosis Estimates in the Healthy Brain during Normal Aging.

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8.  Influence of callosal transfer on visual cortical evoked response and the implication in the development of a visual prosthesis.

Authors:  Timothy L Siu; John W Morley
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9.  Diffusion tensor tractography quantification of the human corpus callosum fiber pathways across the lifespan.

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10.  Callosal Abnormalities Across the Psychosis Dimension: Bipolar Schizophrenia Network on Intermediate Phenotypes.

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Journal:  Biol Psychiatry       Date:  2016-01-12       Impact factor: 13.382

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