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Australian State/Territory : VIC
Scheme : NHMRC Project Grants
Research Topic : DEVELOPMENTAL BIOLOG
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  • Funded Activity

    The Role Of Rnd Genes During Cortical Neurogenesis And Cell Migration

    Funder
    National Health and Medical Research Council
    Funding Amount
    $410,384.00
    Summary
    In order for the brain to function properly, tens of billions of neurons within it first have to be born, then find their proper location before connecting with other neurons in a highly ordered fashion. Failure of these key processes heavily impacts on subsequent brain function, and have been shown to underlie several disorders including epilepsy. This study will investigate how members of the Rnd gene family control cell production and positioning within the developing brain.
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    Funded Activity

    The Role Of GRHL-3, A Mammalian Homologue Of Drosophila Grainyhead, In Neural Tube Development

    Funder
    National Health and Medical Research Council
    Funding Amount
    $496,500.00
    Summary
    Spina bifida and anencephaly are two common human congenital malformations that form part of a wide spectrum of mutations known collectively as neural tube defects (NTDs). Patients with the most severe form of spina bifida have a failure of the vertebral column and skin to close over the spinal cord and therefore suffer from limb paralysis and marked bladder and bowel dysfunction. Infants with anencephaly have an open cranial vault and failure of normal brain development and die within the first .... Spina bifida and anencephaly are two common human congenital malformations that form part of a wide spectrum of mutations known collectively as neural tube defects (NTDs). Patients with the most severe form of spina bifida have a failure of the vertebral column and skin to close over the spinal cord and therefore suffer from limb paralysis and marked bladder and bowel dysfunction. Infants with anencephaly have an open cranial vault and failure of normal brain development and die within the first few hours of life. These abnormalities occur frequently (1-1000 live births) and are a direct result of failure of the neural tube to close during embryogenesis. NTDs are influenced by both environmental and genetic factors. The best characterised environmental factor is the dietary supplement folate, which when administered before conception results in a reduction in the incidence of spina bifida. The genetic complexity is evidenced by the array of mouse genetic mutations that give rise to NTDs. One of these mouse mutations, known as Curly tail (ct), has served as the major animal model of human NTDs. This is because the ct mice are resistant to folate administration (like most of the cases of spina bifida currently seen in patients) and because the mice seem to have normal development in virtually all other organ systems. Ironically, the genetic mutation that causes the curly tail phenotype has remained undiscovered for over 50 years. We have now identified the gene mutated in the curly tail mice. This gene is highly conserved in humans suggesting that it will play a similar role in neural tube development in man. The gene, known as GRHL-3, is a descendant of a fly gene critical for development of the nervous system in that organism. The studies we propose here will examine the developmental pathways involved in normal neural tube closure in mice and humans and will impact on our understanding of these devastating congenital malformations.
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    Funded Activity

    Early Detection Of Infants And Young Children With Autism

    Funder
    National Health and Medical Research Council
    Funding Amount
    $268,250.00
    Summary
    Autism is a severely handicapping condition adversely affecting social interaction, communication, behaviour, interests, and activities. Autism requires treatment at an early age (before 4 years). Despite finding that parents notice problems with their child's development within the first 2 years, on average diagnoses are made around 6 years of age. Treatment for autism should begin as early as possible to improve outcome. Diagnosis requires specialist assessment and these services are limited. .... Autism is a severely handicapping condition adversely affecting social interaction, communication, behaviour, interests, and activities. Autism requires treatment at an early age (before 4 years). Despite finding that parents notice problems with their child's development within the first 2 years, on average diagnoses are made around 6 years of age. Treatment for autism should begin as early as possible to improve outcome. Diagnosis requires specialist assessment and these services are limited. Therefore it is not possible to undertake such assessments with all children who have developmental problems. This project therefore proposes to evaluate a method for screening large populations of children for autism, thus enabling timely and more appropriate referral to assessment services. Previous work by the investigators has developed a potential screening tool (DBC Early Screen) for autism in young children under 4 years with developmental delay that has high levels of accuracy in identifying those infants and children who are at risk of autism and require specialist assessment. This project proposes to undertake a community field trial to assess the accuracy and reliability of this early screen and to establish its suitability for wide use as a population screening tool. The preliminary testing of DBC Early Screen demonstrated that a community field trial was feasible. The results of this study will facilitate the referral of infants and young children to specialist autism assessment services, thus enabling the commencement of appropriate early intervention for children and their families from an early age.
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    Funded Activity

    An Examination Of Motor Functioning In Autism And Asperger's Disorder: An Analysis Of Gait & Cortical Brain Activity.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $120,220.00
    Summary
    Autism is a developmental disorder characterised by a triad of deficits: delayed and atypical language development, impaired development of social skills, and ritualistic and stereotypic behaviour. Although not part of the standard diagnosis, movement disorders and gait abnormalities have been clinically observed in autism similar to those seen in Parkinson's disease. In addition, individuals with Asperger's disorder may appear more clumsy, have a stiff or awkward way of walking, and exhibit poo .... Autism is a developmental disorder characterised by a triad of deficits: delayed and atypical language development, impaired development of social skills, and ritualistic and stereotypic behaviour. Although not part of the standard diagnosis, movement disorders and gait abnormalities have been clinically observed in autism similar to those seen in Parkinson's disease. In addition, individuals with Asperger's disorder may appear more clumsy, have a stiff or awkward way of walking, and exhibit poor coordination in posture and gesture. It has been suggested that there is disruption within the basal-ganglia-thalamocortical circuitry (the region connecting the frontal and sub-cortical structures), which may cause the motor dysfunction seen in autism and Asperger's disorder. Few studies have attempted to isolate particular stages of motor functioning which may account for the coordination and motor delay observed clinically in autism and Asperger's disorder. A recent study of ours found evidence to suggest that motor planning deficiencies may account for the 'clumsy' movement patterns frequently reported in the autism - Asperger's disorder literature. Therefore, the aim of this research is to provide a comprehensive neurobehavioural and neurophysiological analysis of motor functioning in young people with autism and Asperger's disorder to further examine the exact stages of motor processing which are deficient in these disorder groups. Recent retrospective studies have shown that even as infants children with autism exhibit clear features of motor disturbance, which, if detected and clearly defined, could advance early diagnosis. In addition to advancing the clinical definition of autism and Asperger's disorder, a careful examination of motor disturbance may also illuminate the neurobiological underpinnings of these disorders.
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    Funded Activity

    Mechanisms Guiding Pathfinding And Positioning Of Cortical Interneurons

    Funder
    National Health and Medical Research Council
    Funding Amount
    $621,606.00
    Summary
    Brain disorders place an economic and social burden on Australia and the personal costs of these illnesses are immeasurable. Several brain abnormalities are caused from the failure of neurons to position themselves in the correct location when the brain develops. Our study aims to discover how neurons move and what factors influence this process. It provides an understanding of normal brain development, as well as providing insight into what may go wrong in the formation of brain diseases.
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    Funded Activity

    SEX HORMONES AND SOCIAL INTERACTION DEFICITS

    Funder
    National Health and Medical Research Council
    Funding Amount
    $503,694.00
    Summary
    Prevalence report by the Australian Advisory Board on Autism Spectrum Disorders (ASD) estimated that 1 child in every 160 children in the 6-12 year-old age group is affected by ASD. There is no cure for ASD and the causes are not understood. We propose that sex hormones may play a role in the development of these disorders. We will test this hypothesis using knockout and transgenic mouse models which have social interaction deficits and brain structure reminiscent of these disorders.
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    Funded Activity

    Ocular Motility In Autism And Asperger S Disorder: Dissociation Of Motor Deficits.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $131,235.00
    Summary
    We will use ocular motor technology to investigate motor dysfunction in autism and Asperger's disorder, to advance our understanding of the neurobiological bases of these disorders. This will help clarify whether neural networks are differentially disrupted in these disorders, as our previous clinical research suggests. This dissociation and the subsequent development of an ocular motor clincal screen may improve diagnosis, and potentially treatment, of these devastating conditions.
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    Funded Activity

    Motor Functioning In Autism And Asperger's Disorder: Furthering Current Neurobehavioural And Clinical Definitions

    Funder
    National Health and Medical Research Council
    Funding Amount
    $354,932.00
    Summary
    While it is well known that autism and Asperger's disorder are associated with social, communicative, and behavioural symptoms, it is less well known that affected individuals also have considerable movement and coordination difficulties. For example, these children often have problems with hand writing, walking, hopping, skipping, catching, and running. These skills are very important for success at school; for example, if children are unable to participate in school sports they often feel isol .... While it is well known that autism and Asperger's disorder are associated with social, communicative, and behavioural symptoms, it is less well known that affected individuals also have considerable movement and coordination difficulties. For example, these children often have problems with hand writing, walking, hopping, skipping, catching, and running. These skills are very important for success at school; for example, if children are unable to participate in school sports they often feel isolated and rejected from the peer group. Also, hand writing problems have a significant impact on children's academic performance. Our previous research has suggested that there may be particular patterns of motor problems that characterise individuals with autism and Asperger's disorder. Our proposed research aims to use the kinds of 3D motion analysis technology used in the movie industry to capture exactly how people affected by these conditions move and respond to the environment. This study will enable us to highlight particular parts of the brain-motor circuitry that are affected by these disorders and will also enable us to more clearly distinguish how autism is different from Asperger's disorder. Ultimately, it is hoped that our motor investigations will lead to improved assessment and interventions for these disorders.
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