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Presurgical resting-state functional MRI language mapping with seed selection guided by regional homogeneity

  • Ai Ling Hsu
  • , Henry Szu Meng Chen
  • , Ping Hou
  • , Changwei W. Wu
  • , Jason M. Johnson
  • , Kyle R. Noll
  • , Sujit S. Prabhu
  • , Sherise D. Ferguson
  • , Vinodh A. Kumar
  • , Donald F. Schomer
  • , Jyh Horng Chen
  • , Ho Ling Liu*
  • *Corresponding author for this work
  • University of Texas MD Anderson Cancer Center
  • National Taiwan University
  • Taipei Medical University

Research output: Contribution to journalJournal Article peer-review

8 Scopus citations

Abstract

Purpose: Resting-state functional MRI (rs-FMRI) has shown potential for presurgical mapping of eloquent cortex when a patient’s performance on task-based FMRI is compromised. The seed-based analysis is a practical approach for detecting rs-FMRI functional networks; however, seed localization remains challenging for presurgical language mapping. Therefore, we proposed a data-driven approach to guide seed localization for presurgical rs-FMRI language mapping. Methods: Twenty-six patients with brain tumors located in left perisylvian regions had undergone task-based FMRI and rs-FMRI before tumor resection. For the seed-based rs-FMRI language mapping, a seeding approach that integrates regional homogeneity and meta-analysis maps (RH+MA) was proposed to guide the seed localization. Canonical and task-based seeding approaches were used for comparison. The performance of the 3 seeding approaches was evaluated by calculating the Dice coefficients between each rs-FMRI language mapping result and the result from task-based FMRI. Results: With the RH+MA approach, selecting among the top 6 seed candidates resulted in the highest Dice coefficient for 81% of patients (21 of 26) and the top 9 seed candidates for 92% of patients (24 of 26). The RH+MA approach yielded rs-FMRI language mapping results that were in greater agreement with the results of task-based FMRI, with significantly higher Dice coefficients (P <.05) than that of canonical and task-based approaches within putative language regions. Conclusion: The proposed RH+MA approach outperformed the canonical and task-based seed localization for rs-FMRI language mapping. The results suggest that RH+MA is a robust and feasible method for seed-based functional connectivity mapping in clinical practice.

Original languageEnglish
Pages (from-to)375-383
Number of pages9
JournalMagnetic Resonance in Medicine
Volume84
Issue number1
DOIs
StatePublished - 01 07 2020

Bibliographical note

Publisher Copyright:
© 2019 International Society for Magnetic Resonance in Medicine

Keywords

  • functional magnetic resonance imaging
  • preoperative mapping
  • presurgical mapping
  • regional homogeneity
  • resting state

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