The Neurobiology Of Auditory Hallucinations: Characterisation Of Dysfunction Within A Neural Circuitry Model.
Funder
National Health and Medical Research Council
Funding Amount
$299,625.00
Summary
This is a highly innovative research proposal which is based on years of extensive research by our group. Auditory hallucinations are a prominent and potentially disabling symptom of psychosis, however it is extremely difficult to study them scientifically. Past research by our group (and other groups internationally) has indicated that an extensive network in the brain is activated whenever auditory hallucinations occur, but the source of this brain activity is unclear. It was thought that the ....This is a highly innovative research proposal which is based on years of extensive research by our group. Auditory hallucinations are a prominent and potentially disabling symptom of psychosis, however it is extremely difficult to study them scientifically. Past research by our group (and other groups internationally) has indicated that an extensive network in the brain is activated whenever auditory hallucinations occur, but the source of this brain activity is unclear. It was thought that the source may be the same brain circuits that are involved in generating inner speech or monitoring it, but our past research has ruled out these possibilities. Instead, our recent work suggests that auditory hallucinations may be associated with poorly functioning connections within central auditory processing circuits, specifically between left and right auditory association cortical regions. We conceptualise hallucinations as an abnormal and involuntary form of memory retrieval consequent to this dysfunction. Our study will pioneer methods of measuring connectivity in the brain circuits identified in our model, using a combination of functional magnetic resonance imaging (fMRI) and electroencephalographic (EEG) techniques in tandem with tests of central auditory processing. We believe that sufferers may benefit from understanding the physical processes which cause hallucinations. We also believe that a better understanding of hallucinations may lead to a better understanding of schizophrenia and the psychoses, which may in turn help in the development of better ways of treating these illnesses.Read moreRead less
Promoting Plasticity And Functional Recovery In The Adult Brain: Enrichment And Transcranial Magnetic Stimulation
Funder
National Health and Medical Research Council
Funding Amount
$402,493.00
Summary
The adult human brain is unable to repair itself: axons do not regenerate effectively and there is limited reorganisation of remaining projections. Our research directly addresses how to form anatomically accurate and thus functionally useful networks through improving axonal regeneration per se, but more importantly it investigates clinically relevant, non-invasive methods that encourage the remaining nerve cells to reorganise, maximising the surviving resources of the damaged brain.
Novel Molecules Underlying The Development Of Corticopetal And Corticofugal Pathways
Funder
National Health and Medical Research Council
Funding Amount
$289,250.00
Summary
The mammalian brain consists of many discrete areas which perform specific functions. Each area has specific sets of connections with other brain areas. These sets of connections underlie the ability of the brain to execute functions critical to our daily lives, such as sight, hearing, touch and movement, as well as more complex functions such as memory, motivation and reasoning. We currently know little about how the sets of connections which underlie these functions are formed. The aim of this ....The mammalian brain consists of many discrete areas which perform specific functions. Each area has specific sets of connections with other brain areas. These sets of connections underlie the ability of the brain to execute functions critical to our daily lives, such as sight, hearing, touch and movement, as well as more complex functions such as memory, motivation and reasoning. We currently know little about how the sets of connections which underlie these functions are formed. The aim of this project is to understand how some of the connections between the cortex and other brain areas are formed during development. To do this the project will combine modern molecular techniques with neuroanatomy to identify molecules that are expressed by specific populations of neurons during critical developmental stages. These molecules will then be misexpressed in order to determine whether they are important for the development of appropriate connectivity in the brain. A knowledge of the molecules that regulate the development of neuronal pathways is critical to understanding brain development. In the long term, it will also lead to the development of therapies for cases when the brain is damaged or does not develop appropriately due to disease or injury.Read moreRead less