Close category search window
 

Selection Criteria for the Analysis of Data-Driven Clusters in Cerebral fMRI

Full text access may be available

To access full text, please use your member or institutional sign in.


This paper appears in:
Biomedical Engineering, IEEE Transactions on
Date of Publication: Oct. 2008
Author(s): Gomez-Laberge, C.
Neurosci. Program, Ottawa Health Res. Inst., Ottawa, ON
Adler, A. ;  Cameron, I. ;  Thanh Binh Nguyen ;  Hogan, M.J.
Volume: 55 , Issue: 10
Page(s): 2372 - 2380
Product Type: Journals & Magazines

Available Formats Non-Member Price Member Price
US$31.00 US$10.00
Learn how you can qualify for the best price for the item!
  • Email
  • Print
  • Rights And Permissions

Abstract

Functional MRI (fMRI) may be possible without a priori models of the cerebral hemodynamic response. First, such data-driven fMRI requires that all cerebral territories with distinct patterns be identified. Second, a systematic selection method is necessary to prevent the subjective interpretation of the identified territories. This paper addresses the second point by proposing a novel method for the automated interpretation of identified territories in data-driven fMRI. Selection criteria are formulated using: 1) the temporal cross-correlation between each identified territory and the paradigm and 2) the spatial contiguity of the corresponding voxel map. Ten event-design fMRI data sets are analyzed with one prominent algorithm, fuzzy c-means clustering, before applying the selection criteria. For comparison, these data are also analyzed with an established, model-based method: statistical parametric mapping. Both methods produced similar results and identified potential activation in the expected territory of the sensorimotor cortex in all ten data sets. Moreover, the proposed method classified distinct territories in separate clusters. Selected clusters have a mean temporal correlation coefficient of 0.39 plusmn0.07 ( n = 19) with a mean 2.7 plusmn1.4 second response delay. At most, four separate contiguous territories were observed in 87% of these clusters. These results suggest that the proposed method may be effective for exploratory fMRI studies where the hemodynamic response is perturbed during cerebrovascular disease.

Index Terms

Index Terms are available to subscribers and IEEE members.

 





Need Help?


IEEE Advancing Technology for Humanity About IEEE Xplore | Contact | Help | Terms of Use | Nondiscrimination Policy | Site Map | Privacy & Opting Out of Cookies

A non-profit organization, IEEE is the world's largest professional association for the advancement of technology.
© Copyright 2012 IEEE - All rights reserved. Use of this web site signifies your agreement to the terms and conditions.