Cortical Spreading Depressions: Effects On Intracellular Ca2+ Concentration And Mechanisms Of Propagation
Funder
National Health and Medical Research Council
Funding Amount
$185,604.00
Summary
Human neuropathologies such as migraine, stroke, focal epilepsy and head injury all appear to involve an event called cortical spreading depression (CSD). This is characterised by a transient loss of excitability of cells that slowly spreads from a site of initiation out across the cortical surface. In normal brain tissue CSDs do not kill cells but in tissue with less than optimal energy supply CSDs do kill cells. This project is designed to understand the mechanisms contributing to CSD-induced ....Human neuropathologies such as migraine, stroke, focal epilepsy and head injury all appear to involve an event called cortical spreading depression (CSD). This is characterised by a transient loss of excitability of cells that slowly spreads from a site of initiation out across the cortical surface. In normal brain tissue CSDs do not kill cells but in tissue with less than optimal energy supply CSDs do kill cells. This project is designed to understand the mechanisms contributing to CSD-induced cell death. It is widely accepted that a high intracellular concentration of calcium ions is lethal to a cell. Thus, the proposed experiments are expected to show that a single episode of CSD in normal brain tissue induces only small changes in the intracellular calcium ion concentration but if repeated episodes of CSD occur, and if they take place in tissue with a compromised energy supply, then the calcium concentration rises to detrimental levels. Little is known about the mechanisms which underlie the propagation of CSD and therefore experiments will also be undertaken to investigate whether release of a messenger into the extracellular space is important or if there is a role for release of calcium from intracellular stores.Read moreRead less
Development Of A Magnetic Resonance Imaging (MRI) Platform To Evaluate Neuroprotective And Regenerative Therapies In MS
Funder
National Health and Medical Research Council
Funding Amount
$116,667.00
Summary
Multiple Sclerosis (MS) involves inflammation and damage to nerve cells. New therapies are needed to minimize and reverse nerve cell damage. Currently, ways to judge the benefit of these therapies are primitive. We propose that assessing the benefits of these treatments in optic neuritis (inflammation of the eye nerve) is the way forward but first, we need to develop reliable tests to measure these treatments. This application proposes to use magnetic resonance imaging (MRI) for this purpose.
Acute And Chronic Stroke - Novel Imaging Biomarkers Of The Ischemic Penumbra And Recovering Infarct
Funder
National Health and Medical Research Council
Funding Amount
$105,388.00
Summary
Stroke is a major cause of death and disability in our community. Most strokes result from a blocked blood vessel in the brain which leads to the almost immediate death of some brain tissue. However surrounding brain tissue is potentially salvageable if blood supply can be restored. This research uses magnetic resonance imaging (MRI) to better demonstrate salvageable brain tissue so that existing treatments to re-open blocked blood vessels can in future be safer and more widely applicable.
The Contributions Of Different Sources Of Calcium To The Induction Of Long Term Potentiation
Funder
National Health and Medical Research Council
Funding Amount
$267,750.00
Summary
When we make memories, we alter the strength of synaptic connections between nerve cells.These changes are particularly marked in the hippopcampus ; a region of the brain involved in the formation of memories. The strength of a synaptic connection is altered if it activates a neurone sufficiently to cause a rise in the level of calcium ions. Calcium can be derived from several sources within the neurone. This project aims to assess the relative importance of these different sources of calcium in ....When we make memories, we alter the strength of synaptic connections between nerve cells.These changes are particularly marked in the hippopcampus ; a region of the brain involved in the formation of memories. The strength of a synaptic connection is altered if it activates a neurone sufficiently to cause a rise in the level of calcium ions. Calcium can be derived from several sources within the neurone. This project aims to assess the relative importance of these different sources of calcium in inducing increases in synaptic strength.Read moreRead less
Our lives depend upon maintaining the correct body temperature. Failure to regulate it properly may be lethal. This is particularly true in the elderly, who are more susceptible on the one hand to heat stroke and on the other to hypothermia. Many die each year from both these causes. Body temperature is regulated by the brain, yet our understanding of how and where in the brain this happens is poor. This proposal aims to work out the 'wiring diagram' of brain temperature control pathways in rats ....Our lives depend upon maintaining the correct body temperature. Failure to regulate it properly may be lethal. This is particularly true in the elderly, who are more susceptible on the one hand to heat stroke and on the other to hypothermia. Many die each year from both these causes. Body temperature is regulated by the brain, yet our understanding of how and where in the brain this happens is poor. This proposal aims to work out the 'wiring diagram' of brain temperature control pathways in rats and to begin to extend this knowledge to humans. This work will generate new knowledge about a vital function. The insights obtained will inform and guide future strategies in aged care, intensive care and perioperative care.Read moreRead less
Functional Mapping Of Autonomic Control Circuits In The Human Brain
Funder
National Health and Medical Research Council
Funding Amount
$291,451.00
Summary
Nerves called sympathetic nerves stimulate the heart and raise blood pressure. The brain drives them when we are excited or frightened. It also over-drives them in cardiovascular diseases, and this makes matters worse. This project will use MRI brain scanning to investigate, for the first time, how the cerebral cortex and brain stem act together to control sympathetic nerves. Understanding how this system works normally will help tell us how it may malfunction, and what we can do to correct it.
I am a neuroscientist using robust statistical methods to identify effective neuroprotectants for stroke. I am examining the use of neuroprotection and novel imaging approaches to extend the utility of thrombolysis, and testing the hypothesis that neuropr
Despite advances in medical management, critical care clinicians continue to search for procedures that will improve outcomes in critically ill patients with haemorrhagic shock (a life-threatening fall in blood pressure). Shock is a consequence of an active process triggered by the brain . The proposed research aims to elucidate the precise sequence of brain events that initiate and maintain shock. We will also evaluate the effects of interventions (designed to ameliorate or reverse shock) on th ....Despite advances in medical management, critical care clinicians continue to search for procedures that will improve outcomes in critically ill patients with haemorrhagic shock (a life-threatening fall in blood pressure). Shock is a consequence of an active process triggered by the brain . The proposed research aims to elucidate the precise sequence of brain events that initiate and maintain shock. We will also evaluate the effects of interventions (designed to ameliorate or reverse shock) on the brain events that drive the shock response. The results of this research will offer, for the first time, a rational basis for devising new methods to reverse or ameliorate shock and potentially improve clinical outcomesRead moreRead less