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1.
The authors examined the effects of sex and neonatal hormones on the response of pyramidal cells (Layer III, parietal cortex) to injury of the medial frontal cortex in the adult rat. At birth, males were gonadectomized (GDX) or sham-operated. Females were given testosterone (T) or oil injections. In adulthood, rats that had been left intact at birth were GDX, and they then received bilateral medial frontal cortex lesions or sham surgery. Rats not exposed to T at birth exhibited losses of dendritic arbor (males GDX at birth) or dendritic spine density (oil-treated females). Compensation after cortical injury is dependent on the rat's sex and history of exposure to gonadal steroids. (PsycINFO Database Record (c) 2010 APA, all rights reserved)  相似文献   

2.
Evidence from developmental, lesion, and neuroimaging studies indicates that the prefrontal cortex plays a major role in executive abilities, including inhibitory control. Proficient executive performance, however, relies not only on the integrity of the prefrontal cortex but also on its interactions with other brain regions. In the current study, the authors focused on the effect that early damage to the white matter tracts interconnecting prefrontal and other brain regions has on inhibitory control. Data were collected from 13 children with bilateral spastic cerebral palsy and from a control group of 20 children with no history of neurologic compromise. Converging evidence from 3 separate paradigms is presented that strongly suggests these children experience impairments in inhibitory control. Findings are discussed within the context of current cognitive and neuroanatomical models of inhibition. (PsycINFO Database Record (c) 2010 APA, all rights reserved)  相似文献   

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