Selective detrending method for reducing task-correlated motion artifact during speech in event-related FMRI Journal Article


Authors: Gopinath, K.; Crosson, B.; McGregor, K.; Peck, K.; Chang, Y. L.; Moore, A.; Sherod, M.; Cavanagh, C.; Wabnitz, A.; Wierenga, C.; White, K.; Cheshkov, S.; Krishnamurthy, V.; Briggs, R. W.
Article Title: Selective detrending method for reducing task-correlated motion artifact during speech in event-related FMRI
Abstract: Task-correlated motion artifacts that occur during functional magnetic resonance imaging can be mistaken for brain activity. In this work, a new selective detrending method for reduction of artifacts associated with task-correlated motion (TCM) during speech in event-related functional magnetic resonance imaging is introduced and demonstrated in an overt word generation paradigm. The performance of this new method is compared with that of three existing methods for reducing artifacts because of TCM: (1) motion parameter regression, (2) ignoring images during speech, and (3) detrending time course datasets of signal components related to TCM (deduced from artifact corrupted voxels). The selective detrending method outperforms the other three methods in reducing TCM artifacts and in retaining blood oxygenation level dependent signal. © 2008 Wiley-Liss, Inc.
Keywords: adult; middle aged; case report; magnetic resonance imaging; oxygen; algorithms; brain; stroke; intermethod comparison; aphasia; fmri; functional magnetic resonance imaging; brain mapping; image processing, computer-assisted; image processing; regression analysis; motion; computer program; signal processing; signal processing, computer-assisted; artifact reduction; speech; task-correlated motion; word-generation; blood oxygenation; blood oxygenation level dependent signal; electroencephalogram; event related potential; motion analysis system; selective detrending method; signal detection; task correlated motion analysis; artifacts
Journal Title: Human Brain Mapping
Volume: 30
Issue: 4
ISSN: 1065-9471
Publisher: John Wiley & Sons  
Date Published: 2009-04-01
Start Page: 1105
End Page: 1119
Language: English
DOI: 10.1002/hbm.20572
PUBMED: 18465746
PROVIDER: scopus
PMCID: PMC3010868
DOI/URL:
Notes: --- - "Cited By (since 1996): 1" - "Export Date: 30 November 2010" - "CODEN: HBMAE" - "Source: Scopus"
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  1. Kyung Peck
    116 Peck