PubMed Health⌕ Search

Biomedical subjects

Jennifer S Salamat

Publications and source records attributed to Jennifer S Salamat.

2 recordsLinked to original sources

Increasing task difficulty facilitates the cerebral compensatory response to total sleep deprivation.

STUDY OBJECTIVES: To test the role of task difficulty in the cerebral compensatory response after total sleep deprivation (TSD). DESIGN: Subjects performed a modified version of Baddeley's logical reasoning task while undergoing functional magnetic resonance imaging twice: once after normal sleep and once following 35 hours of TSD. The task was modified to parametrically manipulate task difficulty. SETTING: Inpatient General Clinical Research Center and outpatient functional magnetic resonance imaging center. PATIENTS OR PARTICIPANTS: 16 young adults (7 women; mean age, 27.6 +/- 6.1 years; education, 15.4 +/- 1.8 years) were included in the final analyses. INTERVENTIONS: None. MEASUREMENTS AND RESULTS: Behaviorally, subjects performed the same after TSD as while well rested. Neuroimaging data revealed a linear increase in cerebral response with a linear increase in task demands in several brain regions after normal sleep. Even stronger linear responses were found after TSD in several brain regions, including bilateral inferior parietal lobes, bilateral temporal cortex, and left inferior and dorsolateral prefrontal cortex. CONCLUSIONS: Task difficulty facilitates the cerebral compensatory response observed following TSD. Compensation manifests as both new regions that did not show significant responses to task demands in the well-rested condition, as well as stronger responses within regions typically underlying task performance. The possible significance of these 2 types of responses should be explored further, as should the importance of the parietal lobes for cognitive performance after TSD.

Adult↗

Brain regions involved in simple and complex grammatical transformations.

Grammatical transformation is a verbal reasoning task requiring judging the veracity of statements describing the spatial order of letter sets. We studied 18 adults with FMRI while they performed grammatical transformations of varying complexity levels (2-letter, 3-letter, and 4-letter sentences). Brain regions activated by 2-letter sentences included the visuospatial processing regions of the bilateral parietal lobes and the frontal operculum. A linear increase in sentence complexity engaged dorsolateral and ventrolateral prefrontal cortex as well as significantly increased activation within 2LTR areas. These data provide evidence that grammatical transformation reasoning relies primarily on the posterior visuospatial working memory system and need not necessarily engage the prefrontal cortex. Increasing the complexity of grammatical transformation, though, activates prefrontal cortex.

Adult↗