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Improved Resting-State Functional MRI Using Multi-Echo Echo-Planar Imaging on a Compact 3T MRI Scanner with High-Performance Gradients
by
In, Myung-Ho
, Meyer, Nolan K.
, Trzasko, Joshua D.
, Foo, Thomas K.
, Kang, Daehun
, Fernandez, Brice
, Huston, John
, Ahmed, Zaki
, Bernstein, Matt A.
, Gray, Erin M.
, Jo, Hang Joon
, Madhavan, Radhika
, Shu, Yunhong
, Halverson, Maria A.
, Black, David F.
, Welker, Kirk M.
in
Alzheimer's disease
/ BOLD
/ Brain - diagnostic imaging
/ Brain Mapping - methods
/ compact 3T
/ Comparative analysis
/ Datasets
/ Echo-Planar Imaging - methods
/ fMRI
/ gradient system
/ Image Processing, Computer-Assisted - methods
/ Magnetic resonance imaging
/ Magnetic Resonance Imaging - methods
/ Medical imaging
/ Medical imaging equipment
/ multi-echo EPI
/ Neuroimaging
/ Physiology
/ resting state
/ Scanners
2023
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Improved Resting-State Functional MRI Using Multi-Echo Echo-Planar Imaging on a Compact 3T MRI Scanner with High-Performance Gradients
by
In, Myung-Ho
, Meyer, Nolan K.
, Trzasko, Joshua D.
, Foo, Thomas K.
, Kang, Daehun
, Fernandez, Brice
, Huston, John
, Ahmed, Zaki
, Bernstein, Matt A.
, Gray, Erin M.
, Jo, Hang Joon
, Madhavan, Radhika
, Shu, Yunhong
, Halverson, Maria A.
, Black, David F.
, Welker, Kirk M.
in
Alzheimer's disease
/ BOLD
/ Brain - diagnostic imaging
/ Brain Mapping - methods
/ compact 3T
/ Comparative analysis
/ Datasets
/ Echo-Planar Imaging - methods
/ fMRI
/ gradient system
/ Image Processing, Computer-Assisted - methods
/ Magnetic resonance imaging
/ Magnetic Resonance Imaging - methods
/ Medical imaging
/ Medical imaging equipment
/ multi-echo EPI
/ Neuroimaging
/ Physiology
/ resting state
/ Scanners
2023
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Improved Resting-State Functional MRI Using Multi-Echo Echo-Planar Imaging on a Compact 3T MRI Scanner with High-Performance Gradients
by
In, Myung-Ho
, Meyer, Nolan K.
, Trzasko, Joshua D.
, Foo, Thomas K.
, Kang, Daehun
, Fernandez, Brice
, Huston, John
, Ahmed, Zaki
, Bernstein, Matt A.
, Gray, Erin M.
, Jo, Hang Joon
, Madhavan, Radhika
, Shu, Yunhong
, Halverson, Maria A.
, Black, David F.
, Welker, Kirk M.
in
Alzheimer's disease
/ BOLD
/ Brain - diagnostic imaging
/ Brain Mapping - methods
/ compact 3T
/ Comparative analysis
/ Datasets
/ Echo-Planar Imaging - methods
/ fMRI
/ gradient system
/ Image Processing, Computer-Assisted - methods
/ Magnetic resonance imaging
/ Magnetic Resonance Imaging - methods
/ Medical imaging
/ Medical imaging equipment
/ multi-echo EPI
/ Neuroimaging
/ Physiology
/ resting state
/ Scanners
2023
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Improved Resting-State Functional MRI Using Multi-Echo Echo-Planar Imaging on a Compact 3T MRI Scanner with High-Performance Gradients
Journal Article
Improved Resting-State Functional MRI Using Multi-Echo Echo-Planar Imaging on a Compact 3T MRI Scanner with High-Performance Gradients
2023
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Overview
In blood-oxygen-level-dependent (BOLD)-based resting-state functional (RS-fMRI) studies, usage of multi-echo echo-planar-imaging (ME-EPI) is limited due to unacceptable late echo times when high spatial resolution is used. Equipped with high-performance gradients, the compact 3T MRI system (C3T) enables a three-echo whole-brain ME-EPI protocol with smaller than 2.5 mm isotropic voxel and shorter than 1 s repetition time, as required in landmark fMRI studies. The performance of the ME-EPI was comprehensively evaluated with signal variance reduction and region-of-interest-, seed- and independent-component-analysis-based functional connectivity analyses and compared with a counterpart of single-echo EPI with the shortest TR possible. Through the multi-echo combination, the thermal noise level is reduced. Functional connectivity, as well as signal intensity, are recovered in the medial orbital sulcus and anterior transverse collateral sulcus in ME-EPI. It is demonstrated that ME-EPI provides superior sensitivity and accuracy for detecting functional connectivity and/or brain networks in comparison with single-echo EPI. In conclusion, the high-performance gradient enabled high-spatial-temporal resolution ME-EPI would be the method of choice for RS-fMRI study on the C3T.
Publisher
MDPI AG,MDPI
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