Plasticity Of Sensorimotor Representations In Adult Primate Cortex
Funder
National Health and Medical Research Council
Funding Amount
$554,656.00
Summary
Cells in some regions of the brain, collectively known as the sensorimotor cortex, control our capacity to purposefully move the arms and hands. Damage to these regions in adults causes severe deficits. However, rehabilitative training can restore some control over the muscles. To understand how the brain circuits change to compensate for injury, and what effect rehabilitation may have on these changes, I will study cellular alterations in the movement control pathways in the cerebral cortex.
Muscle fatigue is common after exercise in healthy people. In many tasks, some muscles become more fatigued than others. Thus, the nervous system must often coordinate fatigued muscles (which produce less force) with unfatigued muscles. We will investigate how fatigue of one muscle alters the way the brain controls other muscles that are engaged in the same task or in unrelated tasks. This will aid understanding of the failures of coordination that lead to poor performance and injury.
The Neurophysiology Of Abnormal Motor Development In Preterm Children
Funder
National Health and Medical Research Council
Funding Amount
$479,967.00
Summary
Better neonatal care has improved survival of prematurely born children. While most of these children will have no obvious brain lesion and attend mainstream schools, many will experience motor and cognitive difficulties and problems with social adjustment. However, the physiological mechanisms underlying this dysfunction are unknown. We will study preterm and term born children to elucidate the physiological mechanisms underlying motor and cognitive dysfunction associated with prematurity.