Attentional asymmetries for navigation in healthy and clinical groups. This project plans to investigate how differences in attentional capacity between the left and right sides of the brain affect the ability to walk or manoeuvre vehicles between obstacles. To navigate our environment and avoid obstacles, we need to attend to stimuli that are important and ignore those that are not. Unfortunately, the brain’s attentional capacity is limited, which can result in errors and collisions. Using the ....Attentional asymmetries for navigation in healthy and clinical groups. This project plans to investigate how differences in attentional capacity between the left and right sides of the brain affect the ability to walk or manoeuvre vehicles between obstacles. To navigate our environment and avoid obstacles, we need to attend to stimuli that are important and ignore those that are not. Unfortunately, the brain’s attentional capacity is limited, which can result in errors and collisions. Using the techniques of cognitive neuroscience, the project aims to provide a better understanding of the cognitive and neural mechanisms that govern attention in an applied setting. It expects to identify the factors that exacerbate lapses in attention and collisions. The effect of everyday impediments such as mobile phones, alcohol and fatigue will be investigated together with means of minimising these attentional lapses and improving safety.Read moreRead less
Closing the loop between salience and brain activity. This project aims to understand how animals exposed to an abundance of highly complex information decide what to attend to, that is, how they determine visual saliency. The project will approach this question by systematically tracking visual decision-making in the smallest animal brains, in closed-loop virtual reality environment. This approach will uncover basic working principles applicable to any system that needs to pay attention in a vi ....Closing the loop between salience and brain activity. This project aims to understand how animals exposed to an abundance of highly complex information decide what to attend to, that is, how they determine visual saliency. The project will approach this question by systematically tracking visual decision-making in the smallest animal brains, in closed-loop virtual reality environment. This approach will uncover basic working principles applicable to any system that needs to pay attention in a visually cluttered world, from insects to humans or autonomous vehicles.Read moreRead less
The relative impacts of sleep, wake and the internal body clock on human performance. The 24h society presents a number of challenges to the shiftworker. First, shiftworkers have to maintain a balance between the competing needs of work, family, leisure and social life. Second, shiftwork has been identified as a risk factor for obesity, diabetes and heart disease. Third, shiftworkers have an increased risk of injury and death at work. This project will use an innovative research protocol to prov ....The relative impacts of sleep, wake and the internal body clock on human performance. The 24h society presents a number of challenges to the shiftworker. First, shiftworkers have to maintain a balance between the competing needs of work, family, leisure and social life. Second, shiftwork has been identified as a risk factor for obesity, diabetes and heart disease. Third, shiftworkers have an increased risk of injury and death at work. This project will use an innovative research protocol to provide critical information about the independent and combined effects of sleep loss and body clock disruption on human performance. Work schedules designed on the basis of a better understanding of sleep loss and circadian disruption will result in healthier employees, safer workplaces, and reduced costs to the community.Read moreRead less