The effect of respiration variations on independent component analysis results of resting state functional connectivity

被引:230
作者
Birn, Rasmus M. [1 ]
Murphy, Kevin [1 ]
Bandettini, Peter A. [1 ]
机构
[1] NIMH, Sect Funct Imaging Methods, Lab Brain & Cognit, Bethesda, MD 20892 USA
关键词
default-mode network; respiration; independent component analysis; functional connectivity; rest;
D O I
10.1002/hbm.20577
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The analysis of functional connectivity in fMRI can be severely affected by cardiac and respiratory fluctuations. While some of these artifactual signal changes can be reduced by physiological noise correction routines, signal fluctuations induced by slower breath-to-breath changes in the depth and rate of breathing are typically not removed. These slower respiration-induced signal changes occur at low frequencies and spatial locations similar to the fluctuations used to infer functional connectivity, and have been shown to significantly affect seed-ROI or seed-voxel based functional connectivity analysis, particularly in the default mode network. In this study, we investigate the effect of respiration variations on functional connectivity maps derived from independent component analysis (ICA) of resting-state data. Regions of the default mode network were identified by deactivations during a lexical decision task. Variations in respiration were measured independently and correlated with the MRI time series data. ICA appears to separate the default mode network and the respiration-related changes in most cases. In some cases, however, the component automatically identified as the default mode network was the same as the component identified as respiration-related. Furthermore, in most cases the time series associated with the default mode network component was still significantly correlated with changes in respiration volume per time, suggesting that current methods of ICA may not completely separate respiration from the default mode network. An independent measure of the respiration provides valuable information to help distinguish the default mode network from respiration-related signal changes, and to assess the degree of residual respiration related effects.
引用
收藏
页码:740 / 750
页数:11
相关论文
共 56 条
  • [11] Functional connectivity in a baseline resting-state network in autism
    Cherkassky, Vladimir L.
    Kana, Rajesh K.
    Keller, Timothy A.
    Just, Marcel Adam
    [J]. NEUROREPORT, 2006, 17 (16) : 1687 - 1690
  • [12] IMPACT: Image-based physiological artifacts estimation and correction technique for functional MRI
    Chuang, KH
    Chen, JH
    [J]. MAGNETIC RESONANCE IN MEDICINE, 2001, 46 (02) : 344 - 353
  • [13] Parametric analysis of fMRI data using linear systems methods
    Cohen, MS
    [J]. NEUROIMAGE, 1997, 6 (02) : 93 - 103
  • [14] Cordes D, 2000, AM J NEURORADIOL, V21, P1636
  • [15] AFNI: Software for analysis and visualization of functional magnetic resonance neuroimages
    Cox, RW
    [J]. COMPUTERS AND BIOMEDICAL RESEARCH, 1996, 29 (03): : 162 - 173
  • [16] Localization of cardiac-induced signal change in fMRI
    Dagli, MS
    Ingeholm, JE
    Haxby, JV
    [J]. NEUROIMAGE, 1999, 9 (04) : 407 - 415
  • [17] Consistent resting-state networks across healthy subjects
    Damoiseaux, J. S.
    Rombouts, S. A. R. B.
    Barkhof, F.
    Scheltens, P.
    Stam, C. J.
    Smith, S. M.
    Beckmann, C. F.
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2006, 103 (37) : 13848 - 13853
  • [18] fMRI resting state networks define distinct modes of long-distance interactions in the human brain
    De Luca, M
    Beckmann, CF
    De Stefano, N
    Matthews, PM
    Smith, SM
    [J]. NEUROIMAGE, 2006, 29 (04) : 1359 - 1367
  • [19] Intrinsic fluctuations within cortical systems account for intertrial variability in human Behavior
    Fox, Michael D.
    Snyder, Abraham Z.
    Vincent, Justin L.
    Raichle, Marcus E.
    [J]. NEURON, 2007, 56 (01) : 171 - 184
  • [20] Spontaneous fluctuations in brain activity observed with functional magnetic resonance imaging
    Fox, Michael D.
    Raichle, Marcus E.
    [J]. NATURE REVIEWS NEUROSCIENCE, 2007, 8 (09) : 700 - 711