Literature DB >> 25462690

Theoretical and experimental evaluation of multi-band EPI for high-resolution whole brain pCASL Imaging.

Xiufeng Li1, Dingxin Wang2, Edward J Auerbach3, Steen Moeller3, Kamil Ugurbil3, Gregory J Metzger3.   

Abstract

Multi-band echo planar imaging (MB-EPI), a new approach to increase data acquisition efficiency and/or temporal resolution, has the potential to overcome critical limitations of standard acquisition strategies for obtaining high-resolution whole brain perfusion imaging using arterial spin labeling (ASL). However, the use of MB also introduces confounding effects, such as spatially varying amplified thermal noise and leakage contamination, which have not been evaluated to date as to their effect on cerebral blood flow (CBF) estimation. In this study, both the potential benefits and confounding effects of MB-EPI were systematically evaluated through both simulation and experimentally using a pseudo-continuous arterial spin labeling (pCASL) strategy. These studies revealed that the amplified noise, given by the geometry factor (g-factor), and the leakage contamination, assessed by the total leakage factor (TLF), have a minimal impact on CBF estimation. Furthermore, it is demonstrated that MB-EPI greatly benefits high-resolution whole brain pCASL studies in terms of improved spatial and temporal signal-to-noise ratio efficiencies, and increases compliance with the assumptions of the commonly used single blood compartment model, resulting in improved CBF estimates.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Arterial spin labeling (ASL); Cerebral blood flow (CBF); Leakage evaluation via acquired dummy slices (LEADS); Multi-band echo planar imaging (MB-EPI); Pseudo-continuous arterial spin labeling (pCASL); Total leakage factor (TLF)

Mesh:

Year:  2014        PMID: 25462690      PMCID: PMC4337884          DOI: 10.1016/j.neuroimage.2014.10.029

Source DB:  PubMed          Journal:  Neuroimage        ISSN: 1053-8119            Impact factor:   6.556


  37 in total

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Authors:  E C Wong; R B Buxton; L R Frank
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6.  Comparison of 2D simultaneous multi-slice and 3D GRASE readout schemes for pseudo-continuous arterial spin labeling of cerebral perfusion at 3 T.

Authors:  Manjunathan Nanjappa; Thomas Troalen; Josef Pfeuffer; Bénédicte Maréchal; Tom Hilbert; Tobias Kober; Fabien C Schneider; Pierre Croisille; Magalie Viallon
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7.  Quantitative single breath-hold renal arterial spin labeling imaging at 7T.

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10.  Extending the Human Connectome Project across ages: Imaging protocols for the Lifespan Development and Aging projects.

Authors:  Michael P Harms; Leah H Somerville; Beau M Ances; Jesper Andersson; Deanna M Barch; Matteo Bastiani; Susan Y Bookheimer; Timothy B Brown; Randy L Buckner; Gregory C Burgess; Timothy S Coalson; Michael A Chappell; Mirella Dapretto; Gwenaëlle Douaud; Bruce Fischl; Matthew F Glasser; Douglas N Greve; Cynthia Hodge; Keith W Jamison; Saad Jbabdi; Sridhar Kandala; Xiufeng Li; Ross W Mair; Silvia Mangia; Daniel Marcus; Daniele Mascali; Steen Moeller; Thomas E Nichols; Emma C Robinson; David H Salat; Stephen M Smith; Stamatios N Sotiropoulos; Melissa Terpstra; Kathleen M Thomas; M Dylan Tisdall; Kamil Ugurbil; Andre van der Kouwe; Roger P Woods; Lilla Zöllei; David C Van Essen; Essa Yacoub
Journal:  Neuroimage       Date:  2018-09-24       Impact factor: 6.556

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