Executive functioning, gender, age and medication as predictors of developmental well-being among students with ADHD. This study constructs social-cognitive phenotypes of ADHD, evaluates mental health and investigates ADHD student perceptions of classroom environment and achievement in science as functions of executive functioning, gender, age and medication. The effect of standard psychostimulant intervention and a novel nonpsychostimulant option on executive function, developmental and educati ....Executive functioning, gender, age and medication as predictors of developmental well-being among students with ADHD. This study constructs social-cognitive phenotypes of ADHD, evaluates mental health and investigates ADHD student perceptions of classroom environment and achievement in science as functions of executive functioning, gender, age and medication. The effect of standard psychostimulant intervention and a novel nonpsychostimulant option on executive function, developmental and educational outcomes will be investigated. The expected outcomes will inform more effective teacher professional development, and reduce school problems associated with psychostimulant medication and its illicit distribution by students. The linkage of health and education partners meets a nationally identified need for more effective collaboration to improve education outcomes for ADHD students.Read moreRead less
Unleashing the Hidden Chemical Diversity in Australian Fungi. This project aims to exploit an exclusive genomic resource consisting of >150 unique Australian filamentous fungi that has been built in a university-industry collaboration for genomic-guided biodiscovery. The genome sequence of these fungi revealed extensive hidden genetic instructions for production of novel biologically active molecules. The project will apply cutting-edge synthetic biology and chemical tools to tap into the hidden ....Unleashing the Hidden Chemical Diversity in Australian Fungi. This project aims to exploit an exclusive genomic resource consisting of >150 unique Australian filamentous fungi that has been built in a university-industry collaboration for genomic-guided biodiscovery. The genome sequence of these fungi revealed extensive hidden genetic instructions for production of novel biologically active molecules. The project will apply cutting-edge synthetic biology and chemical tools to tap into the hidden genomic potential of these Australian fungi. Expected outcomes of this project include new fine chemicals and lead molecules with desirable bioactivies. This will provide significant benefits to Australia's economy through the discovery of new pharmaceuticals, veterinary products and agrichemicals.Read moreRead less