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Research Topic : nervous system disorders
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  • Funded Activity

    Insult, Injury And Recovery In Brain Disease: From Molecules To Therapeutic Outcome

    Funder
    National Health and Medical Research Council
    Funding Amount
    $8,215,611.00
    Summary
    When nerve cells are damaged, destroyed or injured, through disease or trauma, common pathological processes are set in train. Even though there are many factors that might trigger disease, these inevitably lead to common processes that end in cell death or initiate protective processes. One theme involves the factors that surround these responses to nerve injury and stress, and the consequent protective and regenerative responses that ensue. Another theme, closely integrates with the first, is .... When nerve cells are damaged, destroyed or injured, through disease or trauma, common pathological processes are set in train. Even though there are many factors that might trigger disease, these inevitably lead to common processes that end in cell death or initiate protective processes. One theme involves the factors that surround these responses to nerve injury and stress, and the consequent protective and regenerative responses that ensue. Another theme, closely integrates with the first, is to exploit basic biological mechanisms with the aim of identifying and developing therapeutic targets for the management of a wider range of neurological conditions.
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    Funded Activity

    Regulation Of Neural Cell Production In The Normal And Diseased Brain

    Funder
    National Health and Medical Research Council
    Funding Amount
    $6,888,658.00
    Summary
    Members of this team are at the forefront of research into the molecular control of nerve cell production and function in the developing and adult brain. They were responsible, often through collaboration, for many of the major discoveries demonstrating that stem cells in the brain of adult animals can generate new nerve cells; this revolutionised our concept of the brain and opened-up the possibility of therapeutic repair of neural damage through stimulation of a patient?s own stem cells. Disco .... Members of this team are at the forefront of research into the molecular control of nerve cell production and function in the developing and adult brain. They were responsible, often through collaboration, for many of the major discoveries demonstrating that stem cells in the brain of adult animals can generate new nerve cells; this revolutionised our concept of the brain and opened-up the possibility of therapeutic repair of neural damage through stimulation of a patient?s own stem cells. Discovering the molecular mechanisms controlling this process is the goal of the present program. In order to achieve this aim we have formed a team on the basis of considerable past success, as well as future requirements. The team members have the complementary skills to assess all aspects of the problem, including crucial functional and clinical expertise. By combining resources we will position ourselves at the very forefront of the international competition to discover and to evaluate clinically the molecular mechanisms underlying neural repair and regeneration. This is of enormous significance in determining how we best treat stroke, injury and other neurodegenerative diseases in the next 10 years, and will lead to the development of new therapeutics of immense value. The team will use innovative approaches such as cell-sorting to obtain pure populations of stem cells and their progeny in order to identify new therapeutic targets; these will then be validated in animal models of neurological disease. Since team members have previously been involved in progressing molecular discovery to clinical trials, we are also in a good position to exploit these discoveries in partnership with the biopharmaceutical industry.
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    Funded Activity

    Development And Refinement Of Neural Connections In The Adult Brain In Health And Disease

    Funder
    National Health and Medical Research Council
    Funding Amount
    $8,061,596.00
    Summary
    Our group will use innovative approaches such as advanced imaging and cell-sorting and development of animal models to determine how new neurons are generated, how they travel to different parts of the brain and how they integrate into the existing brain circuitry. These discoveries will point to new ways in which to treat brain damage both during ageing and during pathology. Since team members have previously been involved in progressing molecular discovery to clinical trials, we are also in a .... Our group will use innovative approaches such as advanced imaging and cell-sorting and development of animal models to determine how new neurons are generated, how they travel to different parts of the brain and how they integrate into the existing brain circuitry. These discoveries will point to new ways in which to treat brain damage both during ageing and during pathology. Since team members have previously been involved in progressing molecular discovery to clinical trials, we are also in a good position to exploit these discoveries in partnership with the biopharmaceutical industry.
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    Funded Activity

    Identifying Determinants Of Both The Origins And The Progression Of The Depressive And Bipolar (mood) Disorders.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $6,235,352.00
    Summary
    Currently, mood disorders are classified by severity, largely ignoring causes and leading to limited treatments. The Team will clarify how differing depressive and bipolar (mood) disorders are best modelled and pursue their differing causes, so assisting identification of specific treatments relating to their underlying causes. Our studies employ a range of sophisticated technologies, including molecular biology, brain imaging techniques, and mathematical modeling. The capacity of such research .... Currently, mood disorders are classified by severity, largely ignoring causes and leading to limited treatments. The Team will clarify how differing depressive and bipolar (mood) disorders are best modelled and pursue their differing causes, so assisting identification of specific treatments relating to their underlying causes. Our studies employ a range of sophisticated technologies, including molecular biology, brain imaging techniques, and mathematical modeling. The capacity of such research to advance the management of mood disorders address a pressing clinical need.
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    Funded Activity

    Emerging Severe Mental Illness In Young People: Clinical Staging, Neurobiology, Prediction & Intervention From Vulnerabi

    Funder
    National Health and Medical Research Council
    Funding Amount
    $6,229,421.00
    Summary
    Mental disorders, such as psychotic and severe mood disorders, are the largest cause of disability in Australia. However, there is still little known about illness onset, relapse and progression. We have developed a clinical staging model with transition points from symptomfree to subthreshold status, to threshold disorder to chronic disability. We will investigate neurobiological and psychosocial factors which increase the risk of progression through these stages and use this model as a basis f .... Mental disorders, such as psychotic and severe mood disorders, are the largest cause of disability in Australia. However, there is still little known about illness onset, relapse and progression. We have developed a clinical staging model with transition points from symptomfree to subthreshold status, to threshold disorder to chronic disability. We will investigate neurobiological and psychosocial factors which increase the risk of progression through these stages and use this model as a basis for examining the effectiveness of interventions, for example to prevent, delay or ameliorate onset and relapse, and promote vocational recovery. Thus major clinical and public health benefits and an understanding of factors that contribute to the onset and progression of illness will result.
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    Funded Activity

    Neourobiology Of Human Epilepsy: Genes, Cellular Mechanisms,network And Whole Brain

    Funder
    National Health and Medical Research Council
    Funding Amount
    $17,652,824.00
    Summary
    The team is comprised of neurologists, molecular geneticists, physiologists and brain imaging specialists and leads the world in the discovery of the genetic causes of epilepsy. They will continue to identify genes underlying epilepsy and study how genetic variations result in development of seizures. Advanced brain imaging will be used to understand the effects of genetic variation on brain structure and function. This study may lead to new diagnostic methods and treatments for epilepsy.
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    Funded Activity

    Development And Regeneration Of The Visual System

    Funder
    National Health and Medical Research Council
    Funding Amount
    $3,001,079.00
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    Funded Activity

    Reproductive Health For Women

    Funder
    National Health and Medical Research Council
    Funding Amount
    $6,745,274.00
    Summary
    Infertility affects one in six couples and is an extremely distressing, expensive and frustrating experience for those that it afflicts. Through gaining a better understanding of the molecular and cellular processes governing ovulation and early embryo development, this team will devise new therapeutic strategies to improve the reproductive health of Australian women.
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    Funded Activity

    The Prevention, Early Detection, & Effective Management Of Neurocognitive Disorders In The Elderly

    Funder
    National Health and Medical Research Council
    Funding Amount
    $4,929,014.00
    Summary
    The unprecedented greying of the world population is posing a major challenge to health care in meeting the needs of older individuals with cognitive disorders such as Alzheimer�s disease. At the same time, drugs are being developed to prevent these disorders, or to treat them effectively. Our proposal is a comprehensive attempt at dealing with the neuropsychiatric aspects of these neurocognitive disorders. Our group is endeavouring to better define the early stages of these disorders, and study .... The unprecedented greying of the world population is posing a major challenge to health care in meeting the needs of older individuals with cognitive disorders such as Alzheimer�s disease. At the same time, drugs are being developed to prevent these disorders, or to treat them effectively. Our proposal is a comprehensive attempt at dealing with the neuropsychiatric aspects of these neurocognitive disorders. Our group is endeavouring to better define the early stages of these disorders, and studying methods of detecting them at an early stage, using the latest neuropsychological and neuroimaging techniques. We wish to investigate new drugs for the prevention of dementia. Much of dementia is not treated early because of lack of training of primary care physicians in identifying dementia, and we are developing methods to deal with this problem. We are also examining the role of cognitive disorders in accidents and suicides in the elderly, and the development of depression. We are determining the role of psychiatric disorders in the care of these patients, and the methods of alleviating the burden of disease. We expect that this research will make a major impact on health policy for these disorders in Australia. We also hope to make our Program the premier centre for training in geriatric neuropsychiatry.
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    Funded Activity

    Prevention, Early Detection And Effective Management Of Neurocognitive Disorders In The Elderly

    Funder
    National Health and Medical Research Council
    Funding Amount
    $6,547,975.00
    Summary
    The Program comprises a number of longitudinal studies of ageing individuals to develop methods of diagnosing dementia before symptoms become prominent. We are also examining factors that increase the risk of developing dementia. We wish to translate this research into early and better diagnosis, and the development of new treatments and strategies for dementia care. We expect that this research will make a major impact on health policy in Australia for cognitive disorders in the elderly.
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