The Access Project - Assessment Of Coronary Artery Disease Using CT Effectively For Stable Symptoms
Funder
National Health and Medical Research Council
Funding Amount
$754,369.00
Summary
Invasive Coronary Angiography (ICA) provides x-ray visualisation of coronary disease (CAD) that is essential for coronary surgery/balloon angioplasty. However many patients undergo this procedure without requiring these therapies despite the associated severe complications. The ACCESS Project screens patients scheduled for ICA, identifying those unlikely to have CAD and referring them for non-invasive CT angiography. This strategy reduces procedure complications and result in major cost savings.
The PRESERVE Trial: Prevention Of Serious Adverse Events Following Angiography
Funder
National Health and Medical Research Council
Funding Amount
$2,424,334.00
Summary
More than 75,000 coronary angiograms are performed each year in Australia. The dye used in angiograms can cause acute kidney injury (AKI); with diabetes, pre-existing kidney disease and heart failure putting people at high risk. Consequences include irreversible kidney failure requiring dialysis and risk of death. Little evidence support currently used prevention strategies. The PRESERVE Trial will recruit 5,200 people to provide definitive evidence to guide prevention of AKI.
Facilitating The Increase In Pulmonary Blood Flow At Birth
Funder
National Health and Medical Research Council
Funding Amount
$617,729.00
Summary
Pulmonary hypertension in newborn infants is a significant problem that is very difficult to treat because we do not understand how blood flow through the lungs increases at birth. We have recently shown that currently believed mechanisms controlling blood flow at birth are incorrect and additional factors exist. Our experiments will determine factors that affect blood flow through the lungs at birth. This information will be used to improve the care of newborns with pulmonary hypertension.
A Randomised Evaluation Of The Appropriateness Of Anatomic Coronary Investigation In Cardiac Injury/MI Type 2
Funder
National Health and Medical Research Council
Funding Amount
$2,516,561.00
Summary
Myocardial infarction occurring in the context of another concurrent illness is associated with a higher morbidity, and mortality than patients presenting with spontaneous myocardial infarction. Significant variation in the use of coronary angiography for the investigation of these patients exists, and currently no trial evidence or guidelines define best practice. This trial will establish the optimal investigation and treatment approaches for the care of this very common clinical condition.
Microvascular Function And Outcome In Patients With Acute Coronary Syndromes
Funder
National Health and Medical Research Council
Funding Amount
$79,514.00
Summary
Damage to the small vessels of the heart is a hallmark of heart attacks. Furthermore, small vessel dysfunction (MVD) is associated with a worse prognosis even in the presence of an unblocked major coronary artery following a heart attack. Using novel invasive assessments, we aim to analyse the prevalence and clinical predictors of MVD, assess the impact of MVD on short and long-term outcome after heart attack and address the impact of new treatments on MVD and heart muscle recovery.
Next Generation Brain-Machine Interface: Minimally-Invasive Endovascular Stent-Electrode Array For Robotic Limb Control
Funder
National Health and Medical Research Council
Funding Amount
$1,735,574.00
Summary
Persons affected by quadriplegia and hemiplegia from stroke and spinal cord injury have few treatment options. Brain Machine Interfaces (BMIs) reconnect brain to a prosthetic limb, bypassing damaged nervous system. Our group has developed a BMI that can be implanted minimally-invasively, inside a blood vessel within the brain. We propose to evaluate this device in animal studies, and continue on to a human clinical trial pilot study. The aim is to restore mechanical control over the physical env ....Persons affected by quadriplegia and hemiplegia from stroke and spinal cord injury have few treatment options. Brain Machine Interfaces (BMIs) reconnect brain to a prosthetic limb, bypassing damaged nervous system. Our group has developed a BMI that can be implanted minimally-invasively, inside a blood vessel within the brain. We propose to evaluate this device in animal studies, and continue on to a human clinical trial pilot study. The aim is to restore mechanical control over the physical environment for a paralysed patient.Read moreRead less
Studying Coronary Physiology Within Human Coronary Arteries Using Computational Fluid Dynamics
Funder
National Health and Medical Research Council
Funding Amount
$383,834.00
Summary
The aim of this project is to combine the recent technological advances within the individual fields of coronary physiology, three-dimensional coronary angiography, and computational fluid dynamics to develop a novel method to calculate realistic coronary blood flow. This technique will provide a simple and clinically applicable method to measure physiological parameters such as microcirculatory resistance and shear stress within _live� human coronary arteries.
Proof Of Principle For Minimally-Invasive Intravascular Brain-Computer Interface
Funder
National Health and Medical Research Council
Funding Amount
$110,068.00
Summary
Severe injury to limb or spinal cord leads to significant disability. Despite advances in many areas of modern medicine, prosthetic limbs have changed little over decades. A new field of medicine seeks to create a "brain-computer interface" that is capable of controlling a robotic limb, or any electronic device just by thinking. Brain-computer interfaces are currently implanted in an open brain operation. This project aims to demonstrate that a brain-computer interface can be be implanted in a m ....Severe injury to limb or spinal cord leads to significant disability. Despite advances in many areas of modern medicine, prosthetic limbs have changed little over decades. A new field of medicine seeks to create a "brain-computer interface" that is capable of controlling a robotic limb, or any electronic device just by thinking. Brain-computer interfaces are currently implanted in an open brain operation. This project aims to demonstrate that a brain-computer interface can be be implanted in a minimally invasive procedure.Read moreRead less