The articulate brain. Language is essential to human interaction, yet we know comparatively little about the mental processes involved and how they are represented in the brain, how genetic and environmental factors contribute to the development of language, or how effective treatments of language disorders work. The significance of this program of research lies in its capacity to enhance our understanding of a range of mechanisms responsible for a fundamentally human ability, and provide inform ....The articulate brain. Language is essential to human interaction, yet we know comparatively little about the mental processes involved and how they are represented in the brain, how genetic and environmental factors contribute to the development of language, or how effective treatments of language disorders work. The significance of this program of research lies in its capacity to enhance our understanding of a range of mechanisms responsible for a fundamentally human ability, and provide information that will ultimately inform clinical practice. In particular, new knowledge about the brain mechanisms involved in language processing and recovery will inform clinicians about the optimal choice of treatment to maximise outcomes for the individual patient. Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0882219
Funder
Australian Research Council
Funding Amount
$100,000.00
Summary
Infrastructure for an integrated cognitive neurophysiological research facility: Mapping the neurobiology of memory and language. The Integrated Cognitive Neurophysiological Research Facility will enhance Australia's national research capacity in cognitive neuroscience by enabling large numbers of researchers and graduate students to investigate the neuroscience of memory and language in a collaborative, multi-disciplinary research environment. The facility will deliver national benefits by unco ....Infrastructure for an integrated cognitive neurophysiological research facility: Mapping the neurobiology of memory and language. The Integrated Cognitive Neurophysiological Research Facility will enhance Australia's national research capacity in cognitive neuroscience by enabling large numbers of researchers and graduate students to investigate the neuroscience of memory and language in a collaborative, multi-disciplinary research environment. The facility will deliver national benefits by uncovering the ways in which areas of the brain are used to remember events and process language. This information can then be used to understand how damage to the brain (such as in stroke or disease) can disrupt memory and language and subsequently lead to more effective neurorehabilitation techniques.Read moreRead less
Development of integrated biological markers of brain function. With the rapid growth of both brain imaging and genetics, we can now examine the biological basis of complex brain functions, such as memory. Our goal is to combine these techniques to develop evidence-based biological markers of normal function. These markers can then be used to screen for early signs of abnormal function (eg. in Alzheimer's disease) and to assess treatment effects. Two unique features ensure the project's feasibil ....Development of integrated biological markers of brain function. With the rapid growth of both brain imaging and genetics, we can now examine the biological basis of complex brain functions, such as memory. Our goal is to combine these techniques to develop evidence-based biological markers of normal function. These markers can then be used to screen for early signs of abnormal function (eg. in Alzheimer's disease) and to assess treatment effects. Two unique features ensure the project's feasibility: a) access to the first standardized, normative brain database (from the Brain Resource Company Ltd) and b) a scientific collaboration supporting the integration of brain imaging and genetics.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE160101102
Funder
Australian Research Council
Funding Amount
$378,536.00
Summary
Memory Engram Storage and Retrieval. This project aims to probe how long-term memory is stored in the brain. Recently, memory engram-labelling technology has revolutionised the way memory can be experimentally studied. It is now known that sparse populations of neurons that were active during a defined training window are both sufficient and necessary for retrieval of specific memories, and that activation of hippocampal engram causes further downstream activity in connected engram cells of othe ....Memory Engram Storage and Retrieval. This project aims to probe how long-term memory is stored in the brain. Recently, memory engram-labelling technology has revolutionised the way memory can be experimentally studied. It is now known that sparse populations of neurons that were active during a defined training window are both sufficient and necessary for retrieval of specific memories, and that activation of hippocampal engram causes further downstream activity in connected engram cells of other brain regions. However, it is unknown whether engram cell connectivity is important for memory function. The project aims to test this question. Understanding more about memory function in normal conditions may help us to understand and treat disorders of memory.Read moreRead less
The nature of self-recognition: novel approaches to vexing questions. Mirror self-recognition has often been interpreted as evidence for the presence of some form of self-concept/awareness. Children from age 2 onwards investigate their own bodies after seeing a novel mark on their heads in the mirror (surreptitiously placed in their hair by the experimenter). Younger children and most animals do not respond to their images in such a way (instead, for example, treating it as another individual). ....The nature of self-recognition: novel approaches to vexing questions. Mirror self-recognition has often been interpreted as evidence for the presence of some form of self-concept/awareness. Children from age 2 onwards investigate their own bodies after seeing a novel mark on their heads in the mirror (surreptitiously placed in their hair by the experimenter). Younger children and most animals do not respond to their images in such a way (instead, for example, treating it as another individual). The present experiments probe the nature of self-recognition using novel digital video technology rather than mirrors. This technology allows us to manipulate the contingency and appearance of the image. Five studies investigate the performance of 2 to 4-year-old children, autistic children, chimpanzees and dolphins to determine whether they recognize themselves and what underwrites their performance on the tasks. The innovative use of modern technology is expected to answer some of the most persistent questions in psychology.
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The genetic basis of human memory. This project will examine the relationship between genetic variation and performance of normal individuals on a comprehensive range of memory test indicators. Results of the study will clarify the genetic basis of human memory and provide a better understanding of this important function.
The human face as an evolved signalling system. This project will, for the first time, thoroughly investigate the role that facial movement plays in human non-verbal communication. It will uncover the subtle, dynamic signals that are exchanged in almost all everyday social encounters, enriching our understanding of human communication and forming a solid basis for detecting intentions from an analysis of facial movements, with the obvious security benefits that entails.
How Stenolemus Assassin Bugs Crack Spider Codes. This unique study of sophisticated behavioural flexibility and dynamic sensory exploitation in an insect will provide novel insights into how simple cognitive architecture can be used to solve complex problems. These insights are important for the development of artificial intelligence systems. This will be the first study of flexible aggressive mimicry in an insect and will attract considerable international attention, raise the profile of Austra ....How Stenolemus Assassin Bugs Crack Spider Codes. This unique study of sophisticated behavioural flexibility and dynamic sensory exploitation in an insect will provide novel insights into how simple cognitive architecture can be used to solve complex problems. These insights are important for the development of artificial intelligence systems. This will be the first study of flexible aggressive mimicry in an insect and will attract considerable international attention, raise the profile of Australian science and support numerous students. We will make the first use in Australia of state-of-the-art vibration recording and interactive playback techniques. Making these powerful experimental tools available in Australia will enable other many additional innovative lines of research.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE160100088
Funder
Australian Research Council
Funding Amount
$390,000.00
Summary
Central nervous system insulin and hippocampal-dependent cognitive function. This project plans to examine the effects of both infusion of insulin into the brain and the genetic knockdown of insulin transport and activity on cognitive function in mice. This project should increase our understanding of how circulating insulin enters the brain to influence the brain and resulting behaviours.
Electrophysiological correlates of verbal and visuospatial working memory. Successful interaction with the world is dependent on "working memory". This memory system holds things in mind, while relating them to the past and planning for the future. A carefully controlled task, presented on a computer screen, systematically increases the number of items to be kept in mind. Accuracy and speed of matching the items are measured. The results will contribute to a theory of what processes are used ....Electrophysiological correlates of verbal and visuospatial working memory. Successful interaction with the world is dependent on "working memory". This memory system holds things in mind, while relating them to the past and planning for the future. A carefully controlled task, presented on a computer screen, systematically increases the number of items to be kept in mind. Accuracy and speed of matching the items are measured. The results will contribute to a theory of what processes are used in working memory and how the human brain manages these processes.Read moreRead less