Maternal Immune Activation And Adolescent Exposure To Cannabis In Rodents: Do Two Developmental “hits” Lead To Schizophrenia-like Changes In Brain And Behaviour?
Funder
National Health and Medical Research Council
Funding Amount
$636,711.00
Summary
The cause of schizophrenia most likely lies in early brain development due to either genetics or adverse environments. We will examine two successive environmental ‘hits’ in a rat model: infection during pregnancy followed by early adolescent cannabis use. We will track changes in the brain that occur in late adolescence and in young adults. We will also assess behaviour and brain function in adulthood to see if the animals exhibit patterns that mimic those that we see in schizophrenia.
The Effects Of Maternal Infection On Glutamate-related Behavioural, Electrophysiological And Neuropathological Measures Relevant To Schizophrenia
Funder
National Health and Medical Research Council
Funding Amount
$533,136.00
Summary
There are two well known facts about schizophrenia: maternal infection increases the risk of a schizophrenia diagnosis in adulthood and certain drugs, such as PCP, that affect particular brain chemicals induce symptoms and brain changes in healthy individuals that are similar to schizophrenia. Here we bring these two facts together by attempting to develop a maternal infection model in rodents that mimics the brain changes seen in schizophrenia, thus opening up new options for treatment.
The Impact Of Faulty Relevance Filtering In Schizophrenia.
Funder
National Health and Medical Research Council
Funding Amount
$303,194.00
Summary
In schizophrenia ability to maintaining focused attention is impaired. We explore how problems in “next state” prediction contribute to problems in attention. The brain constantly predicts what state of activation it will be in next. When events match these predictions we can easily ignore them but if predictions are wrong a prediction–error can trigger attention interruptions. We will test whether problems in prediction-errors make persons with schizophrenia more susceptible to distraction.
Optimising And Applying Ocular Vestibulat Evoked Myogenic Potentials (oVEMPs)
Funder
National Health and Medical Research Council
Funding Amount
$228,931.00
Summary
This project seeks to optimise techniques for a new method of assessing the balance organs (vestibular organs) and then apply these techniques. Three conditions will be studied: vestibular neuritis - a condition causing acute and severe dizziness; Parkinson's disease, in which disorders of balance are common and superior canal dehiscence (SCD) in which there is a hole in the bone overlying one of the semicircular canals, leading to sensitivity to sound.
Impaired Anticipation Of Sensory Events In Schizophrenia.
Funder
National Health and Medical Research Council
Funding Amount
$307,942.00
Summary
Schizophrenia is a mental illness that costs Australia millions of dollars and hundreds of lives every year. To address this we need to understand more about how schizophrenia develops. A brain measure (mismatch negativity) tracks biological brain changes and functional impairments in daily living that emerge in schizophrenia. It is not yet known if this measure can teach us about vulnerability to developing schizophrenia or only the effect of the disease. This study will address this question.
Measurement Of Residual Nervous System Function After Spinal Cord Injury
Funder
National Health and Medical Research Council
Funding Amount
$779,159.00
Summary
Multiple serial physiological recording techniques will be used to assess sensory and motor function for 12 months after spinal cord injury. This detailed information will provide, for the first time, an insight into the changes, both beneficial and deleterious, in the sensory and motor systems over time. Such information may enable changes in the management of people with spinal cord injury to prevent deleterious effects on the nervous system and enhance function.
Mechanisms Of PTEN Regulation By Ndfip1 And Their Biological Consequences For Neuron Survival During Brain Injury
Funder
National Health and Medical Research Council
Funding Amount
$686,640.00
Summary
We have discovered a new protein (Ndfip1) that protects brain cells from death after brain injury from trauma and stroke. We will investigate why this protein is activated only in some, but not in other, brain cells after injury. In this application, we will study the mechanisms behind neuron protection, and use this information to explore how to increase the number of brain cells activating Ndfip1.
This study investigates how much an individual's genes and environment account for the wide variation in brain structure and function. Using brain imaging we examine in what way the connectivity of the brain of identical and non-identical twins is the same or different from that of their co-twin, and carry out analysis of their DNA to identify some of the genes involved. This will provide fundamental information on genetic mechanisms influencing variation in brain structure and function.
Social Functioning In Early Primary School Following Traumatic Brain Injury Prior To Age Three: The Contribution Of Cognitive, Environmental And Neurological Factors
Funder
National Health and Medical Research Council
Funding Amount
$394,501.00
Summary
Children of preschool age and older demonstrate social problems after a traumatic brain injury (TBI). What effect a TBI has on the social function of young children (before 3 years) is currently unknown but is thought that these children have more problems than older children do. This study will look at how a TBI impacts on the social function of young children and the role of cognition and brain development in social function will also be explored.
Quantifying The Role Of Epigenetic Factors In Neurocognitive Outcomes: A Twin Study
Funder
National Health and Medical Research Council
Funding Amount
$1,516,790.00
Summary
We aim to identify the environmental factors in early life that contribute towards an individual brain development using MRI brain scans and related psychological skills measured in late childhood. We are using twins to better understand differences in their early life environments independent of genetics.