Repository logo

Infoscience

  • English
  • French
Log In
Logo EPFL, École polytechnique fédérale de Lausanne

Infoscience

  • English
  • French
Log In
  1. Home
  2. Academic and Research Output
  3. Journal articles
  4. Real-time automated spectral assessment of the BOLD response for neurofeedback at 3 and 7 T
 
research article

Real-time automated spectral assessment of the BOLD response for neurofeedback at 3 and 7 T

Koush, Yury  
•
Elliott, Mark A.
•
Scharnowski, Frank
Show more
2013
Journal Of Neuroscience Methods

Echo-planar imaging is the dominant functional MRI data acquisition scheme for evaluating the BOLD signal. To date, it remains the only approach providing neurofeedback from spatially localized brain activity. Real-time functional single-voxel proton spectroscopy (fSVPS) may be an alternative for spatially specific BOLD neurofeedback at 7T because it allows for a precise estimation of the local T2* signal, EPI-specific artifacts may be avoided, and the signal contrast may increase. In order to explore and optimize this alternative neurofeedback approach, we tested fully automated real-time fSVPS spectral estimation procedures to approximate T2* BOLD signal changes from the unsuppressed water peak, i.e. lorentzian non-linear complex spectral fit (LNLCSF) in frequency and frequency-time domain. The proposed approaches do not require additional spectroscopic localizers in contrast to conventional T2* approximation based on linear regression of the free induction decay (FID). For methods comparison, we evaluated quality measures for signals from the motor and the visual cortex as well as a real-time feedback condition at high (3 T) and at ultra-high (7T) magnetic field strengths. Using these methods, we achieved reliable and fast water peak spectral parameter estimations. At 7T, we observed an absolute increase of spectra line narrowing due to the-BOLD effect, but quality measures did not improve due to artifactual line broadening. Overall, the automated fSVPS approach can be used to assess dynamic spectral changes in real-time, and to provide localized T2* neurofeedback at 3 and 7T. (c) 2013 Elsevier B.V. All rights reserved.

  • Details
  • Metrics
Type
research article
DOI
10.1016/j.jneumeth.2013.05.002
Web of Science ID

WOS:000324084400002

Author(s)
Koush, Yury  
Elliott, Mark A.
Scharnowski, Frank
Mathiak, Klaus
Date Issued

2013

Publisher

Elsevier

Published in
Journal Of Neuroscience Methods
Volume

218

Issue

2

Start page

148

End page

160

Subjects

Real-time

•

Feedback

•

Neurofeedback

•

fSVPS

•

MRS

•

fMRI

•

BOLD

•

High and ultra-high magnetic field

•

Time and frequency domain estimation

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
MIPLAB  
Available on Infoscience
November 4, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/96644
Logo EPFL, École polytechnique fédérale de Lausanne
  • Contact
  • infoscience@epfl.ch

  • Follow us on Facebook
  • Follow us on Instagram
  • Follow us on LinkedIn
  • Follow us on X
  • Follow us on Youtube
AccessibilityLegal noticePrivacy policyCookie settingsEnd User AgreementGet helpFeedback

Infoscience is a service managed and provided by the Library and IT Services of EPFL. © EPFL, tous droits réservés