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The Early Start Screen Smart Program

Supporting families to create healthy screen time habits

Learn more about the Program

The Early Start Screen Smart Program was developed with parents, for parents and professionals, and backed by research.

The epigenetic origin of alcohol-induced disorders: a cross-species study

Alexander David Martyn Larcombe Martino Symons BScEnv (Hons) PhD BSc PhD B.A. (Hons) PhD. Honorary Research Fellow Head, Chronic Diseases Research

The health effects of electronic cigarettes

Alexander Larcombe BScEnv (Hons) PhD Honorary Research Fellow Honorary Research Fellow Associate Professor Alexander Larcombe began work at The Kids

Artemisinin combination therapy at delivery to prevent postpartum malaria: A randomised open-label controlled trial

Although the incidence of malaria is increased in women in endemic areas after delivery compared to non-pregnant women, no studies have assessed the benefit of presumptive antimalarial treatment given postpartum.

Phage therapy to treat cystic fibrosis Burkholderia cepacia complex lung infections: perspectives and challengesge

Burkholderia cepacia complex is a cause of serious lung infections in people with cystic fibrosis, exhibiting extremely high levels of antimicrobial resistance. These infections are difficult to treat and are associated with high morbidity and mortality. 

Functional outcomes in children and adolescents with neurodisability accessing music therapy: A scoping review

To determine the evidence for functional outcomes experienced by a population with paediatric neurodisability (such as acquired brain injury, cerebral palsy, spinal cord injury, and other neurological disorders), who access music therapy through neurorehabilitation services across the rehabilitation spectrum. 

Influence of maternal and infant technology use and other family factors on infant development

Steve Desiree Zubrick Silva FASSA, FAAMHS, MSc AM PhD MBBS, FRACP, MPH, PhD Honorary Emeritus Research Fellow Co-Director, ORIGINS 08 6319 1409

Feto-placental vascular structure and in silico haemodynamics: Of mice, rats, and human

The complex arborization of the feto-placental vasculature is crucial for optimal fetal nutrition, waste exchange and ultimately, development. Ethical and experimental limitations constrain research into the human placenta, hence experimental animal models such as mice and rats, are crucial to understand placental function. It is unclear how well the mouse and rat feto-placental vascular structure emulates human. Moreover, the implications of differences in vascular structure, especially in arborization, for placental function remain unclear.