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A Pilot Dementia Clinical Quality Registry To Improve Dementia Clinical Care
Funder
National Health and Medical Research Council
Funding Amount
$1,571,501.00
Summary
Clinical Quality Registries collect health data about the quality of clinical care and assist the implementation and monitoring of clinical guidelines into practice. Registries can identify variations in clinical care across geographical areas, facilitate further research into a condition, and help refine and develop new guidelines over time. This proposal will test procedures and pilot a clinical quality registry for dementia, using data from a well-characterised cohort.
Cognition In Motion: Characterization And Evolution Of Cognitive Dysfunction In Motor Neurodegeneration And Frontotemporal Dementia
Funder
National Health and Medical Research Council
Funding Amount
$604,106.00
Summary
Motor neuron disease (MND) is a fatal disease. Cognition may be unaffected or may be severely impaired to warrant a dementia diagnosis. The cognitive status at onset, its progression and the presence of co-morbid dementia of most MND patients is unknown. This research program will develop and validate a cognitive screener that diagnosis co-morbid dementia in the context of motor neurodegeneration in MND.
Developing Insight Into The Molecular Origins Of Familial And Sporadic Frontotemporal Dementia And Amyotrophic Lateral Sclerosis
Funder
National Health and Medical Research Council
Funding Amount
$6,377,279.00
Summary
There is strong evidence that frontotemporal dementia (FTD) and amyotrophic lateral sclerosis (ALS) represent a spectrum of neurodegenerative disease with common origins. A combined study of FTD/ALS patient cohorts will provide greater power to identify these shared molecular origins. We aim to discover gene variants that cause, predispose, or modify onset and progression of inherited and sporadic FTD/ALS, and validate and study our discoveries in new cell and animal models of these disorders.
Optimising Speech Assessment And Treatment In Frontotemporal Dementia
Funder
National Health and Medical Research Council
Funding Amount
$722,210.00
Summary
Frontotemporal dementia has a devastating impact on our ability to speak and understand others. This proposal aims to improve our understanding of how to best assess, diagnose and treat these debilitating impairments. By bringing together an international consortium of clinics, these findings will lead to significant advances in our understanding of disease progression and patient care.
The European Commission study - Models of Child Health Appraised (MOCHA) will examine the most effective model of primary health care (medical and non-medical) for children. We will complement this work through specific Australian studies on (1) experiences at the primary/secondary care interface, (2) development and testing of paediatric quality measures and (3) determining if and how primary care addresses inequity; ensuring all the results are translatable outside the European context.
BRAIN-MEND: Biological Resource Analysis To Identify New Mechanisms And Phenotypes In Neurodegenerative Diseases
Funder
National Health and Medical Research Council
Funding Amount
$861,866.00
Summary
Current classification of neurodegenerative diseases (ND) based on clinical phenotypes does not take into account underlying disease heterogeneity, or overlapping disease mechanisms, thus hindering therapy development. Segregation and re-classification of ND phenotypes is urgently needed. BRAIN-MEND will reclassify existing phenotypic classifications using using pathway and network analyses within and across complex NDs.
Optimising Exercise Prescription For Brain Health In Older Adults At Risk Of Dementia
Funder
National Health and Medical Research Council
Funding Amount
$594,123.00
Summary
To reduce dementia burdens in the community, cost effective and targeted early regenerative strategies are critical. Engaging in frequent aerobic exercise is one strategy that can delay the onset and slow the progression of dementia. However, prescription is limited by an incomplete understanding of how exercise positively influences brain health. Here I will investigate the influence of current exercise levels, intensity and exercise environment on brain health in adults at risk of dementia.
Implications Of Retinal Neurodegeneration In Alzheimer's Disease
Funder
National Health and Medical Research Council
Funding Amount
$602,213.00
Summary
Recent research has shown that “early signs” of Alzheimer ’s disease (AD) can be detected in the eyes. My research focus is to determine which particular changes in the retina are associated with AD. I will also investigate if blocking the production of beta amyloids (proteins produced in AD) in the eye will indeed help reduce their load in the brain and hence delay the onset of AD. Results from this research maybe used for early diagnosis and future medicinal studies that target the eye in AD.
Stand Up To Dementia: Reducing Prolonged Sitting To Improve Cognitive Function In Older Adults
Funder
National Health and Medical Research Council
Funding Amount
$603,901.00
Summary
Australia has an ageing population, resulting in more people being diagnosed with dementia. Prolonged sitting - (a behaviour that is very common amongst older adults) may increase the risk of cognitive decline and thus developing dementia. This study aims to further explore the relationship of sitting with dementia and cognitive function by using objective measures of sitting and also to develop programs and resources to reduce prolonged sitting which are informed by consumers.
Improving Human FMRI Through Modeling And Imaging Microvascular Dynamics
Funder
National Health and Medical Research Council
Funding Amount
$486,144.00
Summary
In this project we aim to establish a reliable vascular baseline to improve mapping of both small-scale functional architecture and large-scale brain networks in functional human brain mapping using MRI. By mapping the grey matter vasculature with high detail in both humans and animals, and by computing and matching of these atlases across species we will be able to validate this approach in vivo to confirm the better spatial specificity of the newly developed approach.