Developing A Prototype Of A Next Generation Brain Computer Interface
Funder
National Health and Medical Research Council
Funding Amount
$837,398.00
Summary
Persons affected by quadriplegia and hemiplegia from stroke and spinal cord injury have few treatment options. Brain Machine Interfaces 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 in the brain. We propose to manufacture a world-first device for a human clinical trial pilot study. The aim is to restore mechanical control over the physical environment for a paralysed patient.
Obstructive Sleep Apnoea Phenotypes And Treatment In Quadriplegia
Funder
National Health and Medical Research Council
Funding Amount
$599,635.00
Summary
Losing function in your arms and legs after an injury (quadriplegia) is a catastrophic event. Quadriplegia also results in obstructive sleep apnoea; a condition where the throat closes repeatedly while asleep causing sleepiness, poor concentration and cardiovascular diseases like stroke. Despite most people with quadriplegia having this disease, the cause is unknown. This project will thoroughly investigate obstructive sleep apnoea causes in people with quadriplegia and test a possible treatment
Spinal Cord Injury Pain: Understanding Mechanisms To Develop Treatments
Funder
National Health and Medical Research Council
Funding Amount
$597,675.00
Summary
Spinal cord injury has devastating effects on health and quality of life. Many of the major consequences of injury, such as chronic pain and loss of voluntary voiding, are "invisible" – i.e., they are not as visible as limitations of mobility. Our study aims to define the neurobiological changes that cause development of persistent pain after spinal cord injury and use pharmacological tools to attenuate the development of pain.
A Randomised Controlled Trial Of Exercise Programs For Preventing Knee Injuries
Funder
National Health and Medical Research Council
Funding Amount
$1,160,491.00
Summary
The promotion of physical activity, either through organised sport or active recreation, is a key public health strategy in this country. However, there is a risk of injury during this participation and efforts need to be undertaken to reduce this risk so that spor is safe for all. Sports injury prevention efforts to date in Australia have been severely hampered by a lack of evidence supporting currently advocated countermeasures. This concern has been recognised by both the NHMRC and the Common ....The promotion of physical activity, either through organised sport or active recreation, is a key public health strategy in this country. However, there is a risk of injury during this participation and efforts need to be undertaken to reduce this risk so that spor is safe for all. Sports injury prevention efforts to date in Australia have been severely hampered by a lack of evidence supporting currently advocated countermeasures. This concern has been recognised by both the NHMRC and the Commonwealth Department of Health and Ageing. It is imperative that we formally evaluate the effectiveness of sports injury countermeasures in the context of broad community level participation in sport, in contrast to previous research focussed on professional sport, and begin to deliver the preventive measures to the community. Australian football is a popular sport throughout Australia and it is associated with more medically-treated injuries than any other sport. Knee injuries are particularly common and can have severe consequences. One of the most commonly recommended knee injury prevention strategies is a well-designed exercise training program. Despite their potential to significantly reduce injury rates, the effectiveness of exercise training programs to prevent knee injuries in football, and indeed in most other sports, has not previously been assessed but has been identified as a priority research area by the NHMRC. This project will determine the effectiveness of exercise training programs for preventing knee injuries in community-level football players by monitoring injury rates, player behaviours and player attitudes before and after the training programs are implemented.Read moreRead less
Towards A National Sports Safety Strategy - Addressing Facilitators And Barriers Towards Safety Guideline Uptake.
Funder
National Health and Medical Research Council
Funding Amount
$965,834.00
Summary
Most sports injury prevention evidence is yet to be translated from professional to community sports settings. Using community-based Australian football clubs, this project will develop and evaluate the strategic implementation of an evidence-based sports safety package. This will provide important information about how to best support community sports clubs to ensure evidence-based safety programs are translated into sustainable policies and practice and public health benefits are maximised
Molecular Targets Of Amino Acid/neurotransmitter Conjugates Of Fatty Acids
Funder
National Health and Medical Research Council
Funding Amount
$846,390.00
Summary
This project investigates endogenous chemicals that affect cells important for detecting and responding to pain. We aim to discover how these compounds affect proteins important for nerve cell function, particularly proteins that have a prominent role in detecting and transmitting painful events. The compounds we examine are not themselves likely to be drugs, but future therapies may involve manipulating the levels of these chemicals in the body, or using drugs that mimic the activity of these c ....This project investigates endogenous chemicals that affect cells important for detecting and responding to pain. We aim to discover how these compounds affect proteins important for nerve cell function, particularly proteins that have a prominent role in detecting and transmitting painful events. The compounds we examine are not themselves likely to be drugs, but future therapies may involve manipulating the levels of these chemicals in the body, or using drugs that mimic the activity of these compounds.Read moreRead less
Enhancing Rehabilitation Services For Aboriginal Australians After Brain Injury: Healing Right Way
Funder
National Health and Medical Research Council
Funding Amount
$906,445.00
Summary
This project involves implementation of the first culturally secure intervention package for Aboriginal survivors of brain impairment in Australia. Stroke and traumatic brain injury occur significantly more frequently in Aboriginal populations, yet Aboriginal people are under-represented in rehabilitation programs. The project will improve accessibility to rehabilitation, improve health outcomes, and establish an economic model contributing to sustainability and planning of future services.
APLP2: A Neuroprotective Receptor For Acute Brain Injury
Funder
National Health and Medical Research Council
Funding Amount
$648,739.00
Summary
Traumatic brain injury (TBI) is the major cause of deaths in Australians under 45 years of age. We have shown that the amyloid precursor protein (APP) is protective in models of TBI. To understand how APP is neuroprotective we have isolated APP binding proteins and identified the amyloid precursor-like protein 2 (APLP2) molecule as a strong candidate for the APP-neuroprotective receptor. This grant will investigate the interaction between APP and APLP2 as a novel neuroprotective pathway in TBI.
The Molecular Basis For Target Selection In The Central Nervous System By Sensory Axons
Funder
National Health and Medical Research Council
Funding Amount
$251,325.00
Summary
The normal function of the brain depends upon the specific connections that nerve cells make with each other. These connections are set up in the developing embryo when nerve cells send out long processes - axons - which grow towards their synaptic targets. How axons select their correct targets from amongst the millions of alternatives in the developing brain is unknown. A better understanding of this problem will help us develop therapies to assist regenerating axons re-establish correct conne ....The normal function of the brain depends upon the specific connections that nerve cells make with each other. These connections are set up in the developing embryo when nerve cells send out long processes - axons - which grow towards their synaptic targets. How axons select their correct targets from amongst the millions of alternatives in the developing brain is unknown. A better understanding of this problem will help us develop therapies to assist regenerating axons re-establish correct connections following injury to the brain or spinal cord. We propose to use a simple model system, the embryo of the fruitfly Drosophila, to find molecules that are involved in this process of neuron target recognition - ' axon targeting' molecules - and to study how they work. Drosophila can be genetically manipulated in ways not possible in higher animals. Furthermore the simplicity of its nervous system means that we can determine the connections of individual nerve cells with a high degree of precision. In the first part of our project, we will examine Drosophila embryos that carry mutations in genes suspected to code for targeting molecules. We will stain individual sensory nerve cells in these embryos with dyes to reveal the anatomy of their axons in the brain. If sensory axons terminate abnormally in the brain of a given mutant, the affected gene is likely to code for an axon targeting molecule. In the second part of the study, we will investigate the functions of candidate axon targeting molecules using two approaches. Firstly, we will seek to determine whether the molecule acts in the sensory axons or in their target cells. Secondly, we will use time-lapse microscopy to study how the homing behaviour of the sensory axons is affected in mutant embryos. The results of these studies will lead us closer to an answer to the question: How do axons recognise their specific target cells in the brain?Read moreRead less