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Field of Research : Paediatrics
Research Topic : Infant, development
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  • Funded Activity

    The Lactoferrin Infant Feeding Trial (LIFT)

    Funder
    National Health and Medical Research Council
    Funding Amount
    $2,203,171.00
    Summary
    We are an international team committed to clinical trials to improve survival without disability in newborn babies. We plan a randomised trial to confirm if bovine lactoferrin, an inexpensive dairy protein, reduces death or major morbidity and increases total breast milk intake in 1,500 very low birthweight babies in neonatal intensive care units
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    Funded Activity

    A Randomised Controlled Trial Of Enhanced Parenting Capacity To Improve Developmental Outcomes In Preterm Infants

    Funder
    National Health and Medical Research Council
    Funding Amount
    $1,045,141.00
    Summary
    In Australia there are 2, 600 very preterm survivors each year. 50% will have education/behavioural difficulties and 10% major disability. We aim to optimise the development of infants born very preterm through a tailored Positive Parenting Program. We predict reductions in child behavioural and emotional problems at 2 years corrected age.
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    Funded Activity

    Centre Of Research Excellence (CRE) In Newborn Medicine

    Funder
    National Health and Medical Research Council
    Funding Amount
    $2,622,320.00
    Summary
    Problems around birth are common and can have long-term implications, including into adulthood. Our goal is to improve health outcomes for all newborn babies and their families by determining factors that enhance outcome and assessing the benefits and consequences of new treatments for mothers and babies. We are world leaders in this field and are dedicated to training the next generation of health professionals in the care of newborn babies, in Australia and the rest of the world.
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    Funded Activity

    DHA For The Improvement Of Neurodevelopmental Outcome In Preterm Infants: The DINO Trial

    Funder
    National Health and Medical Research Council
    Funding Amount
    $631,875.00
    Summary
    The incidence of neurological problems that occur in children born prematurely is higher than for those born at term. The earlier that a baby is born, the greater chance it has of having some developmental delay and general inability to cope at school. This has implications for the child, the families and the health system. One of the many dietary factors implicated in the development of neural abilities in premature infants is an omega-3 fatty acid called DHA. This compound is present in breast .... The incidence of neurological problems that occur in children born prematurely is higher than for those born at term. The earlier that a baby is born, the greater chance it has of having some developmental delay and general inability to cope at school. This has implications for the child, the families and the health system. One of the many dietary factors implicated in the development of neural abilities in premature infants is an omega-3 fatty acid called DHA. This compound is present in breast milk and most preterm formulas and is found in high concentrations in the brain and retina. In the last third of pregnancy the developing baby would normally accumulate DHA at a rapid rate. So it seems reasonable to assume that a baby outside the mother, that is born premature, would also need to accumulate DHA at this same rate. The problem is that none of the milks currently given to premature infants have DHA in high enough concentration to supply this amount of DHA to the baby. For example, breast milk and preterm formulas contain only a third of the DHA required. In order to provide this amount for the premature infant, breast milk containing DHA at about 1% of the total fat is required. Fortunately the level of DHA in breast milk can be increased to this level by supplementing the mothers diet with fish or olis like tuna oil. This study hopes to show that premature babies who receive DHA in amounts similar to that supplied in the womb will develop better than babies who receive low amounts of DHA.
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    Funded Activity

    Modern Chemical Exposures In Utero And In Infancy, And Their Impact Upon Early Neurodevelopmental Outcomes In The Barwon Infant Study, An Unselected Birth Cohort Study

    Funder
    National Health and Medical Research Council
    Funding Amount
    $138,353.00
    Summary
    I am a paediatric doctor interested in the effects of modern industrial chemicals on children’s development. Even in the womb babies are exposed to industrial chemicals and we know some, like lead, are harmful to developing brains. I am interested in other chemicals that are now suspected to affect development, including the polybrominated diphenyl esters (PBDEs), and I intend to investigate this as part of the Barwon Infant Study, which follows 1250 children from before birth to 3 years.
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    Funded Activity

    Neurodevelopmental Outcomes After Novel Interventions In Newborn Infants

    Funder
    National Health and Medical Research Council
    Funding Amount
    $188,226.00
    Summary
    Children who were sick in the newborn period or born preterm are at increased risk of abnormal development, particularly problems with their ability to walk, think and learn. This research will assess how new treatments affect sick newborns’ later development. For example, giving preterm babies healthy germs, or probiotics, decreases a serious bowel infection, called necrotising enterocolitis or NEC. This research will find out if they also help preterm brain development when the children are 2 .... Children who were sick in the newborn period or born preterm are at increased risk of abnormal development, particularly problems with their ability to walk, think and learn. This research will assess how new treatments affect sick newborns’ later development. For example, giving preterm babies healthy germs, or probiotics, decreases a serious bowel infection, called necrotising enterocolitis or NEC. This research will find out if they also help preterm brain development when the children are 2 years old.
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    Funded Activity

    Retinal Photography To Assess Early Kidney Development In Indigenous Babies

    Funder
    National Health and Medical Research Council
    Funding Amount
    $888,098.00
    Summary
    The objective of this study is to identify infants who are at high risk off subsequent kidney failure . To achieve this objective, we plan to carry out comparison of kidney growth and function between Aboriginal and and non-Aboriginal infants from birth until they are 2 years old. We also hope to determine if changes in the blood vessels in these infants' eyes correspond to changes in the growing kidney- we are trying to determine if the eyes are the windows to the growing kidneys.
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    Funded Activity

    Which Oxygen Saturation Level Should We Use For Very Premature Infants? A Randomised Controlled Trial.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $2,215,600.00
    Summary
    Retinopathy of prematurity (ROP) is a serious complication of premature birth, and is a major cause of preventable blindness. Babies who are born before 28 weeks gestation are at greatest risk for developing severe ROP. Oxygen is one of the most common therapies used daily to care for premature babies, but high oxygen levels are one of multiple factors that can disrupt normal eye development and contribute to ROP. The current dilemma is that doctors and nurses do not know what level of oxygenati .... Retinopathy of prematurity (ROP) is a serious complication of premature birth, and is a major cause of preventable blindness. Babies who are born before 28 weeks gestation are at greatest risk for developing severe ROP. Oxygen is one of the most common therapies used daily to care for premature babies, but high oxygen levels are one of multiple factors that can disrupt normal eye development and contribute to ROP. The current dilemma is that doctors and nurses do not know what level of oxygenation is both safe and most effective for these babies. Whilst higher oxygen levels may increase ROP and other respiratory problems, it is possible that lower oxygen levels may affect other long-term outcomes. Because there is no definitive evidence regarding appropriate oxygenation, a wide spectrum of opinion and practice currently exist. Australia is conducting The Benefits of Oxygen Saturation Targeting Trial (BOOST II), a research study to solve this dilemma. BOOST II is a randomised, double blind, clinical trial, which will study the effects of using two ranges of oxygen saturation, 85-89% versus a higher range 91-95% for infants born before 28 weeks gestation. Both of these oxygen level ranges are currently used in normal practice. Patient safety will be monitored closely, and each infant will have their development, vision and health assessed by specialists at 18-24 months of age (plus the number of weeks premature), to see whether there is difference in survival free of major disability between the two groups. 1200 Australian infants will participate. This study will answer important questions about the benefits and risks of higher versus lower oxygen levels, and will improve the care of thousands of Australian children and millions more worldwide.
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    Funded Activity

    Immune-regulation By Milk Extracts In Vitro As Well As In Vivo In An Animal Model Of Formula Feeding

    Funder
    National Health and Medical Research Council
    Funding Amount
    $369,500.00
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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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