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Research Topic : brain blood flow
Field of Research : Paediatrics
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  • Funded Activity

    Novel Approaches To Assessing Cerebral Circulation And Oxygenation In Preterm Human Infants.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $489,145.00
    Summary
    In the first few days after birth, some premature babies develop low blood pressure. It is thought that this meant that the amount of blood and oxygen going to the brain would also fall. If blood pressure became very low, this could injure the brain. Drugs are used to prevent low blood pressure, but their effect on blood flow and oxygen in the brain is uncertain. This study aims to develop simple cotside monitoring procedures that allow neonatologists to monitor oxygen supply and blood flow in t .... In the first few days after birth, some premature babies develop low blood pressure. It is thought that this meant that the amount of blood and oxygen going to the brain would also fall. If blood pressure became very low, this could injure the brain. Drugs are used to prevent low blood pressure, but their effect on blood flow and oxygen in the brain is uncertain. This study aims to develop simple cotside monitoring procedures that allow neonatologists to monitor oxygen supply and blood flow in the brain in tiny babies who weigh less than 1000gm, and what happens within the brain when drugs are given to raise blood pressure. We will employ a new instrument that generates low intensity near infrared light which passes safely into the brain and is absorbed according to the amount of oxygen present in very small blood vessels. As the methodology is new, we intend to first validate the measurement in immature lambs. The instrument will then be applied in studies of babies undergoing intensive care and at risk for low pressure and brain injury, as many as 5000 babies each year in Australia.
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    Funded Activity

    Neuro-protection In The Preterm Brain - A New Role For Dopamine Therapy?

    Funder
    National Health and Medical Research Council
    Funding Amount
    $183,975.00
    Summary
    Brain injury in premature babies leads to long term adverse outcome. Preliminary data show that dopamine improves brain oxygen. Our study will define effects of dopamine in preventing injury in the immature brain, using animal studies. In immature lambs receiving dopamine, we will test the protective effect of dopamine on brain oxygenation during hypoxia. Outcome will be measured by examining cell injury on lamb brain slices.
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    Funded Activity

    A Pre-clinical Trial Of Early Blood Transfusion For Improving Cerebral Oxygen Delivery In Very Preterm Neonates

    Funder
    National Health and Medical Research Council
    Funding Amount
    $970,603.00
    Summary
    Long-term disability is common in babies born prematurely. This may be due to insufficient delivery of oxygen to the brain, but currently there is no treatment that increases oxygen delivery to the brain. We will determine if blood transfusion is more effective than current treatments given to prevent brain injury in preterm babies. Transfusion has two benefits. It will increase the amount of blood going to the brain. It will also increase the amount of oxygen carried by the blood.
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    Funded Activity

    In What Position Should We Be Sleeping Preterm Infants In The NICU?

    Funder
    National Health and Medical Research Council
    Funding Amount
    $409,742.00
    Summary
    Preterm babies are at risk of brain injury caused by low cerebral blood flow and oxygenation. The prone sleeping position (lying on abdomen) has been found to decrease both cerebral oxygenation and blood pressure in healthy term babies, and is a major risk factor for Sudden Infant Death Syndrome. However, it is common practice for preterm babies to be slept in the prone position.This study will examine the effects of prone vs supine positions on brain oxygenation in the preterm babies.
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    Funded Activity

    Reducing Morbidities In Preterm Growth Restricted Neonates.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $687,214.00
    Summary
    Intrauterine growth restriction (IUGR) is a serious complication of pregnancy and occurs when fetal growth is abnormal, resulting in a fetus that is smaller than it should be for its given gestational age. IUGR babies are at much greater risk of many short and long-term adverse outcomes. This study investigates the role that adverse cardiovascular development plays in the progression of lung, heart and brain disease in preterm IUGR newborns.
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    Funded Activity

    Understanding White Matter Injury In Term-born Children With Cerebral Palsy

    Funder
    National Health and Medical Research Council
    Funding Amount
    $193,863.00
    Summary
    The type of brain injury in cerebral palsy varies. In some children the brain develops abnormally in early pregnancy; others have a stroke or suffer from lack of oxygen around the time of birth. Little is known about the group of children born at term who have damage to the brain’s white matter, a pattern more typical of premature birth. This project will explore brain imaging, potential risk factors, and clinical outcomes for these children to identify possible causes and prevention pathways.
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    Funded Activity

    Developmental Changes In Cerebral Oxygenation After Term And Preterm Birth

    Funder
    National Health and Medical Research Council
    Funding Amount
    $445,306.00
    Summary
    Approximately 10% of all births are preterm and the numbers of infants surviving are increasing. We have previously found that infants born preterm have lower blood pressure over the first 6 months after term equivalent age than infants born at term. We will use new technology to examine how preterm birth affects brain oxygenation and how this is altered with gestational age, sleep states and sleeping position, to provide insights into their increased risk for SIDS.
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    Funded Activity

    Development Of A Rapid, Non-invasive And Biocompatible Bedside Sensing Method For Jaundice Embedded In A Newborn Nappy

    Funder
    National Health and Medical Research Council
    Funding Amount
    $541,744.00
    Summary
    Severe jaundice is a life threatening condition for which an effective screening tool in infants is currently unavailable. There is an urgent need to identify a suitable, reliable and affordable bedside test to positively impact upon the lives of millions of children worldwide by facilitating effective early intervention. This project will validate a non-invasive, affordable bedside test for neonatal jaundice, using a urine test positioned in a newborn’s nappy.
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    Funded Activity

    Mechanisms Contributing To Long-term Neuronal Loss After Hypoxia-ischemia In The Premature Neonate Brain.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $432,535.00
    Summary
    A lack of oxygen (hypoxia) and blood flow to the brain (ischemia) around the time of birth can cause brain injury that perists into adulthood. The burdens on financial, educational and healthcare resources are enormous. We will improve our understanding of what parts of the brain are injured and the mechanisms contributing to on-going brain injury after hypoxia-ischemia.This is important to devise treatments and to provide a healthy start to life for neonates.
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    Funded Activity

    Executive Dysfunction And Brain Development In Very Preterm 13-year-olds - A Longitudinal MRI Study.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $738,656.00
    Summary
    An area of concern for very preterm children is executive function (i.e. skills used for problem solving), which is related to educational problems, behavioural issues and social difficulties. In very preterm children this study will 1) determine if executive function problems remain stable, worsen, or improve with age; 2) look for markers for these problems from infant brain scans; and 3) examine how executive function difficulties are related to brain re-organisation.
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    Showing 1-10 of 42 Funded Activites

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