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 PMID:17997836  

Age at developmental cortical injury differentially alters corpus callosum volume in the rat.

Steven W Threlkeld | Glenn D Rosen | R Holly Fitch
BMC neuroscience | 2007

Freezing lesions to developing rat cortex induced between postnatal day (P) one and three (P1 - 3) lead to malformations similar to human microgyria, and further correspond to reductions in brain weight and cortical volume. In contrast, comparable lesions on P5 do not produce microgyric malformations, nor the changes in brain weight seen with microgyria. However, injury occurring at all three ages does lead to rapid auditory processing deficits as measured in the juvenile period. Interestingly, these deficits persist into adulthood only in the P1 lesion case 1. Given prior evidence that early focal cortical lesions induce abnormalities in cortical morphology and connectivity 1234, we hypothesized that the differential behavioral effects of focal cortical lesions on P1, P3 or P5 may be associated with underlying neuroanatomical changes that are sensitive to timing of injury. Clinical studies indicate that humans with perinatal brain injury often show regional reductions in corpus callosum size and abnormal symmetry, which frequently correspond to learning impairments 567. Therefore, in the current study the brains of P1, 3 or 5 lesion rats, previously evaluated for brain weight, and cortical volume changes and auditory processing impairments (P21-90), were further analyzed for changes in corpus callosum volume.

Pubmed ID: 17997836

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Associated grants

  • Agency: NICHD NIH HHS, United States
    Id: P01 HD020806
  • Agency: NICHD NIH HHS, United States
    Id: P01 HD020806-16A10012
  • Agency: NICHD NIH HHS, United States
    Id: HD20806

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WI (tool)

RRID:RGD_13508588

Rattus norvegicus with name WI from RGD.

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