Newborn babies are at risk of becoming short of oxygen during delivery. Death or brain damage may result. In the days after birth, when the brain is attempting to recover from the lack of oxygen, seizures (also called fits) are common. Seizures may cause further damage to the brain because they release damaging chemicals such as glutamate or because they make extra energy demands on the brain that cannot be met. It is difficult to be certain whether unusual movements or twitches are seizures or ....Newborn babies are at risk of becoming short of oxygen during delivery. Death or brain damage may result. In the days after birth, when the brain is attempting to recover from the lack of oxygen, seizures (also called fits) are common. Seizures may cause further damage to the brain because they release damaging chemicals such as glutamate or because they make extra energy demands on the brain that cannot be met. It is difficult to be certain whether unusual movements or twitches are seizures or not. To detect seizures, it is necessary to measure the EEG, the tiny electrical signals from the brain that can be measured from the scalp using small stick on electrodes. It is difficult to measure EEG, particularly for longer periods, because the electrodes may fall off, the baby may move excessively or electrical interference may ruin the recording. We are proposing to measure EEG for 48 hours in babies who have suffered a lack of oxygen during delivery. We will develop, optimise and implement a new method of automatically detecting seizures, building upon 6 years of fundamental signal processing research work that we have done in the newborn. We will test this system against the 'gold standard' to determine how accurate it will be in detecting seizures. We will also try to find out whether damage in particular areas of the brain or in particular cell types within the brain is most likely to be associated with seizures. The anticipated outcome is that we will be able to accurately identify seizures. This is a major step on the path to being able to prevent injury to the brain and to monitor the effectiveness of new experimental treatments.Read moreRead less
I am a perinatal paediatrician undertaking clinically-focussed research on brain development, brain disorders, brain therapies, neurodevelopmental outcomes and the development, application and evaluation of new technology to clinical problems.
What Role Do Cerebral Hypoxia And Sleep Disruption Play In The Neurocognitive Effects Of Paediatric Sleep Disordered Breathing?
Funder
National Health and Medical Research Council
Funding Amount
$558,957.00
Summary
Sleep disordered breathing (SDB) describes a spectrum of disorders caused by obstruction of the upper airway during sleep from simple primary snoring (PS) to obstructive sleep apnoea (OSA). Findings of our recently studies have provided strong evidence that all levels of SDB severity including PS are associated with neurocognitive and behavioural deficits. In this study we will investigate the mechanisms of which underpin these deficits.
I am a general paediatrician involved in national epidemiological and clinical research about a range of childhood conditions in Australia. I also have expetise in research translation into the
Enhancing The Neuroprotective Benefit Of Hypothermia With Melatonin In The Asphyxiated Neonate
Funder
National Health and Medical Research Council
Funding Amount
$785,331.00
Summary
During labour, asphyxic episodes which cause a severe reduction in oxygen supply can become prolonged and result in perinatal brain injury, termed Hypoxic Ischemic Encephalopathy, which may underlie cerebral palsy. Presently, newborn infants with suspected encephalopathy are cooled, which modestly protects the brain against cellular injury. We propose that the administration of melatonin to the newborn, in addition to cooling, will decrease the post-asphyxic formation of oxygen free radicals, th ....During labour, asphyxic episodes which cause a severe reduction in oxygen supply can become prolonged and result in perinatal brain injury, termed Hypoxic Ischemic Encephalopathy, which may underlie cerebral palsy. Presently, newborn infants with suspected encephalopathy are cooled, which modestly protects the brain against cellular injury. We propose that the administration of melatonin to the newborn, in addition to cooling, will decrease the post-asphyxic formation of oxygen free radicals, thereby reducing the progression of brain damage.Read moreRead less
Role Of Placental Heme-oxygenase Pathway In Regulating Preterm Neonatal Cardiovascular Function
Funder
National Health and Medical Research Council
Funding Amount
$176,719.00
Summary
Babies born prematurely are more likely to experience problems as a result of being born early with males doing worse than females. The mechanisms causing this difference are unknown. The control of blood flow in the placenta and fetus is essential for normal growth and development. This project will investigate the influence of duration of pregnancy, gender, and exposure to antenatal steroids on pathways that control blood flow in the placenta and the newborn in babies born after prematurely.
Implementing, Evaluating And Translating Pragmatic Strategies To Prevent Prenatal Alcohol Exposure (PAE), And Treat Fetal Alcohol Spectrum Disorders (FASD)
Funder
National Health and Medical Research Council
Funding Amount
$340,038.00
Summary
Drinking alcohol when pregnant places the unborn child at risk of lifelong brain damage, that we call Fetal Alcohol Spectrum Disorders (FASD). We can prevent FASD by raising awareness of the harms of drinking in pregnancy, and supporting women not to drink. For those with FASD, treatment programs can help reduce learning and behavioural problems. Our research team work with communities and service providers to implement FASD Prevention and Treatment strategies, and raise awareness of FASD.