Investigating Linguistic Factors Associated with Stuttering in Cantonese. The aim of this research is to gain new knowledge about the cause of stuttering. The project is a collaboration between experts in stuttering in Australia and Hong Kong. Despite decades of study, the cause of stuttering is still not well understood. Research in English has suggested that changes in emphasis from syllable to syllable can trigger individual moments of stuttering. However, Cantonese is very different from Eng ....Investigating Linguistic Factors Associated with Stuttering in Cantonese. The aim of this research is to gain new knowledge about the cause of stuttering. The project is a collaboration between experts in stuttering in Australia and Hong Kong. Despite decades of study, the cause of stuttering is still not well understood. Research in English has suggested that changes in emphasis from syllable to syllable can trigger individual moments of stuttering. However, Cantonese is very different from English, being a tonal and syllabic language, and uncovering the linguistic triggers of stuttering in Cantonese will yield new insight into the complex causality of this disabling condition.Read moreRead less
A Phenomic And Genomic Approach To Identifying Pharmaceutical Targets For The Amelioration Of Hematopoietic Deficit
Funder
National Health and Medical Research Council
Funding Amount
$87,000.00
Summary
Mice and humans are genetically and physiologically similar, and are afflicted by many of the same diseases. By introducing random DNA mutations into the germline, mice with diseaseassociated characteristics can be generated, allowing the subsequent identification of genes involved in particular human disease processes. This project will utilise cutting-edge genetic technologies to discover genes that regulate production of the body�s principal blood clotting agents: platelets. This is of partic ....Mice and humans are genetically and physiologically similar, and are afflicted by many of the same diseases. By introducing random DNA mutations into the germline, mice with diseaseassociated characteristics can be generated, allowing the subsequent identification of genes involved in particular human disease processes. This project will utilise cutting-edge genetic technologies to discover genes that regulate production of the body�s principal blood clotting agents: platelets. This is of particular clinical and commercial importance since a reduction in platelet numbers is the life-threatening result of congenital and autoimmune diseases, viral infections (e.g. HIV) and cancer chemotherapy.Read moreRead less
Defining the molecular and cellular mechanisms of beta cell dysfunction. This project will investigate the influence of environment in the functional adaptation and maladaptation of pancreatic beta cells in diabetes. The research will define the molecular and cellular mechanisms linking environmental triggers such as obesity, high fatty acid levels and hyperglycaemia to beta cell dedifferentiation and dysfunction.
Cellular And Molecular Determinants That Regulate Osteoblasts At The Endosteal Niche During HSC Mobilisation
Funder
National Health and Medical Research Council
Funding Amount
$178,523.00
Summary
Treatments for leukaemia (e.g. chemotherapy) severely deplete immune and blood cells from patients. Transplantation of new blood forming cells (blood stem cells) into these patients is essential, but challenges are faced with isolating sufficient numbers in ways that preserve their ability to reconstitute the blood post transplant. My research aims to advance understanding of current methods used to isolate these cells and ultimately to improve the success of blood stem cell transplantation.
Coupling biophotonic modalities with machine based recognition systems for disease diagnosis. This project will develop new ways to diagnose canine cancer, malaria and atherosclerosis using infrared-based technology and sophisticated pattern recognition techniques in the hope to discover infrared biomarkers that will lead to early diagnosis of the disease and ultimately save lives.
Special Research Initiatives - Grant ID: SR0354474
Funder
Australian Research Council
Funding Amount
$30,000.00
Summary
Metals in Medicine. Metal-based drugs account for several billion dollars of pharmaceutical sales worldwide, but proportionally much less research and development has focussed on this area than organic drugs. Australia has played a pivotal role in the early development of metal-based pharmaceuticals, which remains a research strength. The dual aims of the initiative are to provide a network for a vibrant industry based around metals in medicine and to improve the health of Australians. The ini ....Metals in Medicine. Metal-based drugs account for several billion dollars of pharmaceutical sales worldwide, but proportionally much less research and development has focussed on this area than organic drugs. Australia has played a pivotal role in the early development of metal-based pharmaceuticals, which remains a research strength. The dual aims of the initiative are to provide a network for a vibrant industry based around metals in medicine and to improve the health of Australians. The initiative will foster national and international cross-disciplinary collaborations to address the impediments holding back Australia's potential to take full advantage of our research strength in metals in medicine.Read moreRead less
Better prevention and management of disabling back pain. This project will establish a program of back pain research within an inter-disciplinary research centre focused on the prevention and management of physical disability.
Discovery Early Career Researcher Award - Grant ID: DE120100402
Funder
Australian Research Council
Funding Amount
$375,000.00
Summary
The effectiveness of intervention in communication and safety climate in the operating room. This project will evaluate the effectiveness of an educational intervention on teamwork behaviours in surgery. It will deliver beneficial effects for communication in service delivery, safety and patient care in support of health care in high risk environments.
Special Research Initiatives - Grant ID: SR140100001
Funder
Australian Research Council
Funding Amount
$35,000,000.00
Summary
The Juvenile Diabetes Research Foundation Australian Type 1 Diabetes Research Network and Program. This Proposal continues the development of the initial Type 1 Diabetes Clinical Research Network (CRN), launched by JDRF in June 2011 with a $5m grant from the Australian Government.
The principal goal of the CRN is to positively impact the life of people with T1D in Australia through the support and promotion of clinical research. A further electoral commitment of $35m over 5 years will enable f ....The Juvenile Diabetes Research Foundation Australian Type 1 Diabetes Research Network and Program. This Proposal continues the development of the initial Type 1 Diabetes Clinical Research Network (CRN), launched by JDRF in June 2011 with a $5m grant from the Australian Government.
The principal goal of the CRN is to positively impact the life of people with T1D in Australia through the support and promotion of clinical research. A further electoral commitment of $35m over 5 years will enable further progress towards finding a cure for T1D, including delivering better and faster access to new therapies and treatments that can help prevent and manage the disease.
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