Multicentre structural and functional MRI
dc.contributor.advisor
Lawrie, Stephen
en
dc.contributor.advisor
Moorhead, Bill
en
dc.contributor.author
Gountouna, Viktoria-Eleni
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dc.contributor.sponsor
Medical Research Council (MRC)
en
dc.date.accessioned
2014-10-15T15:34:40Z
dc.date.available
2014-10-15T15:34:40Z
dc.date.issued
2014-07-05
dc.description.abstract
Neuroimaging techniques are likely to continue to improve our understanding of
the brain in health and disease, but studies tend to be small, based in one imaging centre
and of uncertain generalisability. Multicentre imaging studies therefore have great appeal
but it is not yet clear under which circumstances data from different scanners can
be combined. The successful harmonisation of multiple Magnetic Resonance Imaging
(MRI) machines will increase study power, flexibility and generalisability. I have conducted
a detailed study of the performance of three research MRI scanners in Scotland
under the name CaliBrain, with the aims of developing reliable, valid image acquisition
and analysis techniques that will facilitate multicentre MRI studies in Scotland
and beyond. Fourteen healthy volunteers had two brain scans on each of three 1.5T
MRI research machines in Aberdeen, Edinburgh and Glasgow. The scans usually took
place 2-3 weeks apart. Each scan was performed using an identical scanning protocol
consisting of a detailed structural MRI (sMRI) and a range of functional MRI (fMRI)
paradigms. The quality assurance (QA) of scanner performance was monitored in all
three sites over the duration of the study using a three-part protocol comprising a baseline
assessment, regular measures and session specific measures. The analyses have
demonstrated that the data are comparable but also that within- and between-scanner
variances are evident and that harmonisation work could enhance the level of agreement.
The QA data suggest that scanner performance was similar between and within
machines over the course of the study. For the structural MRI scans an optimised
methodology was utilised to minimise variation in brain geometry between scanners
and fit all the scanned brains into a common stereotactic space, such that repeated
measures analyses yielded no significant differences over time for any of the three
scanners. I examined the reproducibility of the fMRI motor task within and between
the three sites. Similar results were obtained in all analyses; areas consistently activated
by the task include the premotor, primary motor and supplementary motor areas,
the striatum and the cerebellum. Reproducibility of statistical parametric maps was
evaluated within and between sites comparing the activation extent and spatial agreement
of maps at both the subject and the group level. The results were within the range
reported by studies examining the reproducibility of similar tasks on one scanner and
reproducibility was found to be comparable within and between sites, with between
site comparisons often exceeding the within site measures. A components of variance
analysis showed a relatively small contribution of the factor site with subject being
the main source of variation. Similar results were obtained for the working memory
task. The analysis of the emotional face processing task showed poor reproducibility
both within and between sites. These findings suggest that multicentre structural
and functional MRI studies are feasible, at least on similar machines, when a consistent
protocol is followed in all participating scanning sites, a suitable fMRI task is
employed and appropriate analysis methods are used.
en
dc.identifier.uri
http://hdl.handle.net/1842/9536
dc.language.iso
en
dc.publisher
The University of Edinburgh
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dc.relation.hasversion
Gountouna, V.-E., Job, D. E., McIntosh, A. M., Moorhead, T. W. J., Lymer, G. K. L., Whalley, H. C., HALL, J., Waiter, G. D., Brennan, D., McGonigle, D. J., Ahearn, T. S., Cavanagh, J., Condon, B., Hadley, D. M., Marshall, I., Murray, A. D., Steele, J. D., Wardlaw, J. M., and Lawrie, S. M. (2010). Functional magnetic resonance imaging (fmri) reproducibility and variance components across visits and scanning sites with a finger tapping task. Neuroimage, 49(1):552–560.
en
dc.relation.hasversion
Gradin, V., Gountouna, V.-E., Waiter, G., Ahearn, T. S., Brennan, D., Condon, B., Marshall, I., McGonigle, D. J., Murray, A. D., Whalley, H., Cavanagh, J., Hadley, D., Lymer, K., McIntosh, A., Moorhead, T. W., Job, D., Wardlaw, J., Lawrie, S. M., and Steele, J. D. (2010). Between- and within-scanner variability in the calibrain study n-back cognitive task. Psychiatry Research: Neuroimaging, 184(2):86–95.
en
dc.relation.hasversion
Hall, J., Whalley, H. C., McKirdy, J. W., Romaniuk, L., McGonigle, D., McIntosh, A. M., Baig, B. J., Gountouna, V.-E., Job, D. E., Donaldson, D. I., SPRENGELMEYER, R., Young, A. W., JOHNSTONE, E. C., and Lawrie, S. M. (2008). Overactivation of fear systems to neutral faces in schizophrenia. Biol Psychiatry, 64(1):70–3.
en
dc.relation.hasversion
Moorhead, T.W. J., Gountouna, V.-E., Job, D. E., McIntosh, A. M., Romaniuk, L., Lymer, G. K. S., Whalley, H. C., Waiter, G. D., Brennan, D., Ahearn, T. S., Cavanagh, J., Condon, B., Steele, J. D., Wardlaw, J. M., and Lawrie, S. M. (2009). Prospective multi-centre voxel based morphometry study employing scanner specific segmentations: Procedure development using calibrain structural mri data. BMC Med Imaging, 9(1):8.
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dc.subject
neuroimaging
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dc.subject
sMRI
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dc.subject
fMRI
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dc.subject
multicentre
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dc.title
Multicentre structural and functional MRI
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dc.type
Thesis or Dissertation
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dc.type.qualificationlevel
Doctoral
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dc.type.qualificationname
PhD Doctor of Philosophy
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