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Biblio
Found 27 results
Filters:
Author
is
Cho, Junghun
[Clear All Filters]
2023
Zhang Q
,
Sui C
,
Cho J
,
Yang L
,
Chen T
,
Guo B
,
Gillen KMcCabe
,
Li J
,
Guo L
,
Wang Y
. 2023.
Assessing Cerebral Oxygen Metabolism Changes in Patients With Preeclampsia Using Voxel-Based Morphometry of Oxygen Extraction Fraction Maps in Magnetic Resonance Imaging.
.
Korean J Radiol. 24(4):324-337.
Zhuang H
,
Cho J
,
Chiang GChia-Yi
,
Kovanlikaya I
,
Heier LAnne
,
Dyke JP
,
Wang Y
. 2023.
Cerebral oxygen extraction fraction declines with ventricular enlargement in patients with normal pressure hydrocephalus.
.
Clin Imaging. 97:22-27.
2022
Chiang GC
,
Cho J
,
Dyke J
,
Zhang H
,
Zhang Q
,
Tokov M
,
Nguyen T
,
Kovanlikaya I
,
Amoashiy M
,
de Leon M
et al.
. 2022.
Brain oxygen extraction and neural tissue susceptibility are associated with cognitive impairment in older individuals.
.
J Neuroimaging.
Cho J
,
Nguyen TD
,
Huang W
,
Sweeney EM
,
Luo X
,
Kovanlikaya I
,
Zhang S
,
Gillen KM
,
Spincemaille P
,
Gupta A
et al.
. 2022.
Brain oxygen extraction fraction mapping in patients with multiple sclerosis.
.
J Cereb Blood Flow Metab. 42(2):338-348.
Li J
,
Huang W
,
Luo X
,
Wen Y
,
Cho J
,
Kovanlikaya I
,
Gauthier SA
,
Nguyen TD
,
Spincemaille P
,
Wang Y
. 2022.
The central vein sign in multiple sclerosis lesions: Susceptibility relaxation optimization from a routine MRI multiecho gradient echo sequence.
.
J Neuroimaging. 32(1):48-56.
Yang L
,
Cho J
,
Chen T
,
Gillen KM
,
Li J
,
Zhang Q
,
Guo L
,
Wang Y
. 2022.
Oxygen extraction fraction (OEF) assesses cerebral oxygen metabolism of deep gray matter in patients with pre-eclampsia.
.
Eur Radiol.
Cho J
,
Zhang J
,
Spincemaille P
,
Zhang H
,
Hubertus S
,
Wen Y
,
Jafari R
,
Zhang S
,
Nguyen TD
,
Dimov AV
et al.
. 2022.
QQ-NET - using deep learning to solve quantitative susceptibility mapping and quantitative blood oxygen level dependent magnitude (QSM+qBOLD or QQ) based oxygen extraction fraction (OEF) mapping.
.
Magn Reson Med. 87(3):1583-1594.
Kim J
,
Nguyen TD
,
Zhang J
,
Gauthier SA
,
Marcille M
,
Zhang H
,
Cho J
,
Spincemaille P
,
Wang Y
. 2022.
Subsecond accurate myelin water fraction reconstruction from FAST-T data with 3D UNET.
.
Magn Reson Med. 87(6):2979-2988.
2021
Shen N
,
Zhang S
,
Cho J
,
Li S
,
Zhang J
,
Xie Y
,
Wang Y
,
Zhu W
. 2021.
Application of Cluster Analysis of Time Evolution for Magnetic Resonance Imaging -Derived Oxygen Extraction Fraction Mapping: A Promising Strategy for the Genetic Profile Prediction and Grading of Glioma.
.
Front Neurosci. 15:736891.
Cho J
,
Ma Y
,
Spincemaille P
,
Pike GBruce
,
Wang Y
. 2021.
Cerebral oxygen extraction fraction: Comparison of dual-gas challenge calibrated BOLD with CBF and challenge-free gradient echo QSM+qBOLD.
.
Magn Reson Med. 85(2):953-961.
Cho J
,
Lee J
,
An H
,
Goyal MS
,
Su Y
,
Wang Y
. 2021.
Cerebral oxygen extraction fraction (OEF): Comparison of challenge-free gradient echo QSM+qBOLD (QQ) with O PET in healthy adults.
.
J Cereb Blood Flow Metab. 41(7):1658-1668.
Jafari R
,
Spincemaille P
,
Zhang J
,
Nguyen TD
,
Luo X
,
Cho J
,
Margolis D
,
Prince MR
,
Wang Y
. 2021.
Deep neural network for water/fat separation: Supervised training, unsupervised training, and no training.
.
Magn Reson Med. 85(4):2263-2277.
Wen Y
,
Spincemaille P
,
Nguyen T
,
Cho J
,
Kovanlikaya I
,
Anderson J
,
Wu G
,
Yang B
,
Fung M
,
Li K
et al.
. 2021.
Multiecho complex total field inversion method (mcTFI) for improved signal modeling in quantitative susceptibility mapping.
.
Magn Reson Med. 86(4):2165-2178.
Wu D
,
Zhou Y
,
Cho J
,
Shen N
,
Li S
,
Qin Y
,
Zhang G
,
Yan S
,
Xie Y
,
Zhang S
et al.
. 2021.
The Spatiotemporal Evolution of MRI-Derived Oxygen Extraction Fraction and Perfusion in Ischemic Stroke.
.
Front Neurosci. 15:716031.
Cho J
,
Spincemaille P
,
Nguyen TD
,
Gupta A
,
Wang Y
. 2021.
Temporal clustering, tissue composition, and total variation for mapping oxygen extraction fraction using QSM and quantitative BOLD.
.
Magn Reson Med. 86(5):2635-2646.
2020
Ma Y
,
Sun H
,
Cho J
,
Mazerolle EL
,
Wang Y
,
G Pike B
. 2020.
Cerebral OEF quantification: A comparison study between quantitative susceptibility mapping and dual-gas calibrated BOLD imaging.
.
Magn Reson Med. 83(1):68-82.
Cho J
,
Zhang S
,
Kee Y
,
Spincemaille P
,
Nguyen TD
,
Hubertus S
,
Gupta A
,
Wang Y
. 2020.
Cluster analysis of time evolution (CAT) for quantitative susceptibility mapping (QSM) and quantitative blood oxygen level-dependent magnitude (qBOLD)-based oxygen extraction fraction (OEF) and cerebral metabolic rate of oxygen (CMRO ) mapping.
.
Magn Reson Med. 83(3):844-857.
Eskreis-Winkler S
,
Simon K
,
Reichman M
,
Spincemaille P
,
Nguyen T
,
Kee Y
,
Cho J
,
Christos PJ
,
Drotman M
,
Prince MR
et al.
. 2020.
Dipole modeling of multispectral signal for detecting metallic biopsy markers during MRI-guided breast biopsy: a pilot study.
.
Magn Reson Med. 83(4):1380-1389.
Zhang S
,
Cho J
,
Nguyen TD
,
Spincemaille P
,
Gupta A
,
Zhu W
,
Wang Y
. 2020.
Initial Experience of Challenge-Free MRI-Based Oxygen Extraction Fraction Mapping of Ischemic Stroke at Various Stages: Comparison With Perfusion and Diffusion Mapping.
.
Front Neurosci. 14:535441.
Ma Y
,
Mazerolle EL
,
Cho J
,
Sun H
,
Wang Y
,
G Pike B
. 2020.
Quantification of brain oxygen extraction fraction using QSM and a hyperoxic challenge.
.
Magn Reson Med. 84(6):3271-3285.
2019
Hubertus S
,
Thomas S
,
Cho J
,
Zhang S
,
Wang Y
,
Schad LRudi
. 2019.
Comparison of gradient echo and gradient echo sampling of spin echo sequence for the quantification of the oxygen extraction fraction from a combined quantitative susceptibility mapping and quantitative BOLD (QSM+qBOLD) approach.
.
Magn Reson Med. 82(4):1491-1503.
Hubertus S
,
Thomas S
,
Cho J
,
Zhang S
,
Wang Y
,
Schad LRudi
. 2019.
Using an artificial neural network for fast mapping of the oxygen extraction fraction with combined QSM and quantitative BOLD.
.
Magn Reson Med. 82(6):2199-2211.
2018
Cho J
,
Kee Y
,
Spincemaille P
,
Nguyen TD
,
Zhang J
,
Gupta A
,
Zhang S
,
Wang Y
. 2018.
Cerebral metabolic rate of oxygen (CMRO ) mapping by combining quantitative susceptibility mapping (QSM) and quantitative blood oxygenation level-dependent imaging (qBOLD).
.
Magn Reson Med. 80(4):1595-1604.
Kee Y
,
Cho J
,
Deh K
,
Liu Z
,
Spincemaille P
,
Wang Y
. 2018.
Coherence enhancement in quantitative susceptibility mapping by means of anisotropic weighting in morphology enabled dipole inversion.
.
Magn Reson Med. 79(2):1172-1180.
Zhang J
,
Cho J
,
Zhou D
,
Nguyen TD
,
Spincemaille P
,
Gupta A
,
Wang Y
. 2018.
Quantitative susceptibility mapping-based cerebral metabolic rate of oxygen mapping with minimum local variance.
.
Magn Reson Med. 79(1):172-179.
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