I am a developmental lung physiologist who specialises in understanding the factors regulating normal and abnormal lung development as well as the physiological transformation of the lung into an efficient gas-exchange organ at birth.
I am a developmental lung physiologist who specialises in understanding the factors regulating normal and abnormal lung development as well as the physiological transformation of the lung into an efficient gas-exchange organ at birth.
Defining Regional Lung Mechanics To Improve Lung Protective Ventilation Strategies In Newborn Infants
Funder
National Health and Medical Research Council
Funding Amount
$287,321.00
Summary
Over 3000 newly born infants require mechanical ventilation in Australia every year. The majority are very premature infants. About 30% of ventilated infants develop serious ventilator induced lung injury. Minimising such lung injury with improved techniques of ventilation which can protect the lung from injury will reduce the considerable short and long term health burden of this population.
Reducing Perinatal Lung, Heart And Brain Injury In Preterm Infants – From Bench To The Clinic.
Funder
National Health and Medical Research Council
Funding Amount
$463,652.00
Summary
Many infants are exposed to an adverse environment whilst developing in the womb, and are therefore at increased risk of lung, heart and brain injury, with life-long consequences. This research is focused on improving the entry into the world of vulnerable infants, thus reducing the risk and severity of brain injury.
Imaging Lung Aeration And Lung Motion Following Very Premature Birth
Funder
National Health and Medical Research Council
Funding Amount
$517,631.00
Summary
Using a synchrotron as an X-ray source, we will image the lungs as they aerate at birth and optimise ventilation strategies that improve lung aeration while minimising the risk of ventilation-induced lung injury.
Inter-hospital Variations In Outcomes Of Very Preterm Infants Admitted To Neonatal Intensive Care Units
Funder
National Health and Medical Research Council
Funding Amount
$130,440.00
Summary
Most babies who are born very preterm (less than 32 weeks' gestation; ie more than 2 months early) are admitted to a neonatal intensive care unit (NICU). These babies stay in hospital for 2 to 4 months and need lots of care (using vast amounts of the available health resources). When compared to babies born at term, these very preterm babies are much more likely to die or to suffer from a range of poor outcomes that impact on their long-term development and quality of life. The Australian and Ne ....Most babies who are born very preterm (less than 32 weeks' gestation; ie more than 2 months early) are admitted to a neonatal intensive care unit (NICU). These babies stay in hospital for 2 to 4 months and need lots of care (using vast amounts of the available health resources). When compared to babies born at term, these very preterm babies are much more likely to die or to suffer from a range of poor outcomes that impact on their long-term development and quality of life. The Australian and New Zealand Neonatal Network (ANZNN) is a collaboration of clinical staff in all 29 NICUs in the region, whose aim is to improve the care of high-risk newborn infants and their families in Australia and New Zealand through collaborative audit and research. This audit has reported considerable differences in the rates of death and poor outcomes between NICUs. Other networks have reported similar variations. Variations in outcomes could be due to 1) differences in the way the diagnosis is made in each unit, 2) differences in how small or ill the babies are when admitted, or 3) different quality of care in each NICU. We need to take account of the first two possibilities before we can compare NICUs fairly and allow them to work towards achieving the best outcomes for very premature babies. To do this, our project will use advanced statistical techniques to look at the risk factors associated with death and poor outcome in very preterm babies. We will then be able to 'predict' outcomes and see if the differences between NICUs are real or not. If the variation between units is explained by differences in clinical practices, then this has enormous potential for quality improvement within the NICUs and through the development of new policy guidelines for clinical practice. The statistical models developed during this project will be useful for clinicians in other health areas and in other countries.Read moreRead less
Randomised Controlled Trial Of Therapeutic Pulmonary Lavage In Meconium Aspiration Syndrome
Funder
National Health and Medical Research Council
Funding Amount
$182,550.00
Summary
Meconium aspiration syndrome (MAS) is a serious respiratory disease of full term infants, which can lead to very severe respiratory failure. It is caused by the inhalation of meconium, the secretion of the fetal intestine, into the lung at or prior to delivery. As a result, the airways and air sacs within the lung are damaged, leading to difficulty with breathing and poor oxygen levels. About one-third of all infants with MAS require mechanical ventilation in the first days of life, and are ofte ....Meconium aspiration syndrome (MAS) is a serious respiratory disease of full term infants, which can lead to very severe respiratory failure. It is caused by the inhalation of meconium, the secretion of the fetal intestine, into the lung at or prior to delivery. As a result, the airways and air sacs within the lung are damaged, leading to difficulty with breathing and poor oxygen levels. About one-third of all infants with MAS require mechanical ventilation in the first days of life, and are often extremely difficult to manage. At present, the main treatments given to a ventilated infant with severe MAS are supportive, rather than curative. Lung cleansing procedures are not part of routine care in this condition, even though removal of meconium from the lung may reduce the amount of damage that occurs. This project is a randomised controlled trial of a lung cleansing procedure called lung lavage in ventilated infants with severe MAS. During the lung lavage, a quantity of cleansing fluid containing a natural substance called surfactant is introduced into the lung, and then removed by suctioning. This procedure cleanses the lung of some of the meconium, and in preliminary testing, appears to be safe and well-tolerated even in the sickest infants. In the proposed trial, we will randomly allocate ventilated infants with severe MAS to receive either a lung lavage procedure, or routine care. This will take place within 24 hours of birth. We are looking to see whether the lavage procedure shortens the duration of ventilation, oxygen therapy or hospitalisation. Because there are only a small number of ventilated infants with MAS at any one centre per year, we will involve as many Australian neonatal intensive care units as we can in the study. We aim to enrol 66 infants in the trial, of whom half will receive lavage therapy.Read moreRead less
The exposure of infants to adverse events both before and after birth can cause death or permanent disability (eg cerebral palsy) for the infant. Our primary research objective is to minimize the impact and improve outcomes for infants exposed to adverse events before and/or after birth. We will use a multi-disciplinary approach that aims to understand the science and to develop new treatments, thereby representing true “bench to bedside” research.
Optimising Lung Protective Resuscitation Using A Newborn Premature Lamb Model
Funder
National Health and Medical Research Council
Funding Amount
$392,218.00
Summary
Premature babies are at risk of severe, and potentially long-term, lung damage. These complications can be minimised if babies are optimally resuscitated at birth. This project will use promising new imaging technologies to examine the influence of different strategies, using mechanical ventilators, to help inflate the lung at birth, and their interactions with other therapies used to enhance lung maturity. It will provide new insights into resuscitating preterm babies.
Respiratory failure at birth is a major cause of death and disease in newborn infants. At birth the airways must be cleared of liquid to allow the inhalation of air, but, little is known about the process of lung aeration, because it has not been possible to observe or measure it. We have developed imaging and analytical techniques to observed and measure lung aeration. We will determine ventilation procedures that promote uniform lung aeration and minimise lung injury in ventilated infants.