Clinical Trials Logo

Perinatal Stroke clinical trials

View clinical trials related to Perinatal Stroke.

Filter by:

NCT ID: NCT01936246 Completed - Clinical trials for Hypoxic-ischemic Encephalopathy

Protein Supplementation in Infants With Brain Injury

Start date: August 2012
Phase: N/A
Study type: Interventional

To date, few studies have been done regarding nutrition supplementation in infants with brain injury. Therefore, the investigators are proposing to study the effects of protein supplementation in this group of babies. The investigators will recruit 24 infants with brain injury (evidence of hemorrhage, white matter injury, or gray matter injury) admitted to the Cincinnati Children's Hospital Neonatal Intensive Care Unit (NICU) into the study. Upon diagnosis, the investigators will obtain consent from the parents for participation in the study, then randomly assign the baby to one of two groups - an increased protein group and a control group. Both groups of infants will be monitored to ensure no adverse effects occur due to the supplementation. Protein supplementation will continue for the first 12 months of age. Growth parameters, such as weight, length, and head circumference, will be measured while the infant is the NICU. Head circumference will be measured in the investigators outpatient clinic at three, six, and 12 months of age. At 18-22 months, the infants will be tested for neurodevelopmental outcomes using the Bayley Scales of Infant Development. The investigators hypothesize that infants who receive the additional protein will demonstrate increased head growth and improved neurodevelopmental outcomes.

NCT ID: NCT01773369 Completed - Perinatal Stroke Clinical Trials

Intensive Motor Training After Perinatal Stroke to Enhance Walking

Start date: November 1, 2012
Phase: N/A
Study type: Interventional

Early childhood injuries such as perinatal (around birth) stroke are devastating because the child lives with the problem for life, typically close to a normal lifespan. One 'opportunity' presented by a brain injury early in life compared to later in adulthood is that the young brain is much more plastic (malleable) and receptive to interventions. This is particularly true for neural circuits that are still under development. We will test the hypothesis that early (<2 yr old), intensive leg training will improve walking more than no training or training at >2 yr old. We will further determine the changes induced by training in motor and sensory pathways.