A silent event-related functional MRI technique for brain activation studies without interference of scanner acoustic noise Journal Article


Authors: Yang, Y.; Engelien, A.; Engelien, W.; Xu, S.; Stern, E.; Silbersweig, D. A.
Article Title: A silent event-related functional MRI technique for brain activation studies without interference of scanner acoustic noise
Abstract: A new data acquisition method for silent, event-related functional MRI in which scanner acoustic noise does not interfere with brain activation is introduced and evaluated in an auditory tonotopic mapping experiment. This method takes into account the hemodynamic-response characteristics of the brain during activation, associated with both task performance and scanner noise. A data acquisition scheme was designed to collect task-induced brain activation signals without interference of scanner noise on stimulus delivery or on the measured response. The advantages of the technique were demonstrated in a tonotopic mapping experiment of human auditory cortex. Tonotopic maps obtained by the technique in normal subjects showed distinct spatial shifts of the activation foci in the lateral part of Heschl's gyrus with changing stimulus frequency, whereas no systematic shift was shown in a conventional event-related experiment using the same stimulation paradigm. Signal change in the activation foci with the new technique was 54% larger than with the conventional technique, suggesting an increased dynamic range of the signal change associated with task-induced brain activation under silent conditions. (C) 2000 Wiley-Liss, Inc.
Keywords: nuclear magnetic resonance imaging; magnetic resonance imaging; algorithms; time factors; brain; reference values; brain mapping; cerebral cortex; least-squares analysis; task performance; artifacts; hemodynamics; normal human; functional mri; human experiment; evoked potentials; auditory cortex; noise; acoustic stimulation; hemodynamic processes; humans; human; article; auditory tonotopic mapping; brain hemodynamic response; scanner acoustic noise; tonotopy
Journal Title: Magnetic Resonance in Medicine
Volume: 43
Issue: 2
ISSN: 0740-3194
Publisher: John Wiley & Sons  
Date Published: 2000-02-01
Start Page: 185
End Page: 190
Language: English
DOI: 10.1002/(sici)1522-2594(200002)43:2<185::aid-mrm4>3.0.co;2-3
PUBMED: 10680681
PROVIDER: scopus
DOI/URL:
Notes: Export Date: 18 November 2015 -- Source: Scopus
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  1. Su Xu
    27 Xu