Over the next five years, I will further expand and continue to translate my basic and clinical research programs in women’s health to deliver outcomes to the Australian and international health care systems. In particular, I will target the concept of pregnancy as a determinant of future community health and wellbeing. There is now substantial consensus that environmental influences (including, but not limited to, maternal nutrition) during early life can have a fundamental impact on human deve ....Over the next five years, I will further expand and continue to translate my basic and clinical research programs in women’s health to deliver outcomes to the Australian and international health care systems. In particular, I will target the concept of pregnancy as a determinant of future community health and wellbeing. There is now substantial consensus that environmental influences (including, but not limited to, maternal nutrition) during early life can have a fundamental impact on human development, with consequences for biological and social function and behaviour throughout the lifecourseRead moreRead less
Prof Paxinos ‘s work is involved in understanding brain organisation and function through the fusion of the fields of molecular genetics, comparative and developmental neuroanatomy and Neuro informatics
I am a neuroscientist employing strategies of anatomy, biochemistry, pharmacology, genetics and behavioural analysis to examine the physiological and possible pathological roles of newly discovered neuropeptides and their cognate receptors in mammalian brain. My recent research has focused on the highly-conserved, abundant peptide, relaxin-3 that was discovered at the HFI in 2002. Studies so far have revealed that relaxin-3 is a powerful modulator of rhythmic brain activity (theta) and spatial m ....I am a neuroscientist employing strategies of anatomy, biochemistry, pharmacology, genetics and behavioural analysis to examine the physiological and possible pathological roles of newly discovered neuropeptides and their cognate receptors in mammalian brain. My recent research has focused on the highly-conserved, abundant peptide, relaxin-3 that was discovered at the HFI in 2002. Studies so far have revealed that relaxin-3 is a powerful modulator of rhythmic brain activity (theta) and spatial memory, and alters feeding, body weight and arousal. Relaxin-3 levels in brain are also strongly activated by acute stress. In the future, I aim to elucidate further the role of relaxin-3 systems in normal physiology and metabolic and-or psychiatric diseases.Read moreRead less