Joining Impact Models Of Transport With Spatial Measures Of The Built Environment JIBE
Funder
National Health and Medical Research Council
Funding Amount
$814,558.00
Summary
This project will use spatial analysis, transport behaviour and simulation modelling to generate policy relevant evidence on how built environments can improve population health by supporting active travel in Australia and the United Kingdom. We will estimate built environment scenarios that improve physical activity, air quality, noise pollution and road injuries and show the reduction in non-communicable disease burden by socio-economic groups from creating healthy built environments.
Understanding The Health Effects Of Biomass Smoke In Australian Towns And Cities
Funder
National Health and Medical Research Council
Funding Amount
$172,392.00
Summary
Wildfires have become more frequent and severe the world over and the health impacts of the associated air pollution is a major gap in the current evidence. Working with lead agencies in air quality regulation, public health and fire management I will examine and compare the health effects of air pollution from deliberate burns, bushfires, wood heaters and other sources of air pollution. The research will focus on respiratory and heart disease to inform public health and individual patient care.
Air Pollution And Mortality And Morbidity In Adult Australians (APMMA Study): A Large Population Based Cohort Study
Funder
National Health and Medical Research Council
Funding Amount
$1,041,410.00
Summary
This study will investigate the link between respiratory and cardiovascular disease and mortality and exposure to long-term air pollution. We will use cutting edge methods to assign neighbourhood air pollution levels to a large cohort of NSW adults (n>265,000) previously recruited in the 45 and Up Study. The study results will be of utmost importance in setting outdoor air pollution standards and informing cost benefit analyses of air pollution control strategies.
Unravelling The Mechanism Coupling Synaptic Activity With Neurotrophin Signaling In The Nervous System
Funder
National Health and Medical Research Council
Funding Amount
$640,815.00
Summary
Although active brain cells are known to survive for much longer than inactive ones, the mechanism underpinning this essential process has remained elusive. We have uncovered a direct coupling between neuronal activity and survival signals. The purpose of this grant application is to establish the molecular mechanism underpinning this coupling and understand how neuropathic pathogens manage to harness it with devastating effects to the brain.