Timothy G Reese
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Explore the profile of Timothy G Reese including associated specialties, affiliations and a list of published articles.
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53
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2534
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Recent Articles
1.
Xing F, Zhuo J, Stone M, Liu X, Reese T, Wedeen V, et al.
J Acoust Soc Am
. 2024 Dec;
156(6):4000-4009.
PMID: 39670769
Identification and quantification of speech variations in velar production across various phonological environments have always been an interesting topic in speech motor control studies. Dynamic magnetic resonance imaging has become...
2.
Dong Z, Reese T, Lee H, Huang S, Polimeni J, Wald L, et al.
Magn Reson Med
. 2024 Nov;
93(4):1535-1555.
PMID: 39552568
Purpose: To overcome the major challenges in diffusion MRI (dMRI) acquisition, including limited SNR, distortion/blurring, and susceptibility to motion artifacts. Theory And Methods: A novel Romer-EPTI technique is developed to...
3.
Hu Z, Berman A, Dong Z, Grissom W, Reese T, Wald L, et al.
Magn Reson Med
. 2024 Sep;
93(2):597-614.
PMID: 39323238
Purpose: Echo planar time-resolved imaging (EPTI) is a new imaging approach that addresses the limitations of EPI by providing high-resolution, distortion- and T/ blurring-free imaging for functional MRI (fMRI). However,...
4.
Park H, Xing F, Stone M, Kang H, Liu X, Zhuo J, et al.
JASA Express Lett
. 2024 Sep;
4(9).
PMID: 39240196
The human tongue exhibits an orchestrated arrangement of internal muscles, working in sequential order to execute tongue movements. Understanding the muscle coordination patterns involved in tongue protrusive motion is crucial...
5.
Dong Z, Reese T, Lee H, Huang S, Polimeni J, Wald L, et al.
bioRxiv
. 2024 Feb;
PMID: 38352481
Purpose: To overcome the major challenges in dMRI acquisition, including low SNR, distortion/blurring, and motion vulnerability. Methods: A novel Romer-EPTI technique is developed to provide distortion-free dMRI with significant SNR...
6.
Xing F, Liu X, Reese T, Stone M, Wedeen V, Prince J, et al.
Proc SPIE Int Soc Opt Eng
. 2023 Feb;
12032.
PMID: 36777787
Accurate strain measurement in a deforming organ has been essential in motion analysis using medical images. In recent years, internal tissue's in vivo motion and strain computation has been mostly...
7.
Wang F, Dong Z, Reese T, Rosen B, Wald L, Setsompop K
Neuroimage
. 2022 Feb;
250:118963.
PMID: 35122969
Multi-parametric quantitative MRI has shown great potential to improve the sensitivity and specificity of clinical diagnosis and to enhance our understanding of complex brain processes, but suffers from long scan...
8.
Phipps K, van de Boomen M, Eder R, Michelhaugh S, Spahillari A, Kim J, et al.
Radiol Cardiothorac Imaging
. 2021 Jul;
3(3):e200580.
PMID: 34250491
Purpose: To develop and assess a residual deep learning algorithm to accelerate in vivo cardiac diffusion-tensor MRI (DT-MRI) by reducing the number of averages while preserving image quality and DT-MRI...
9.
Woo J, Xing F, Prince J, Stone M, Gomez A, Reese T, et al.
Med Image Anal
. 2021 Jun;
72:102131.
PMID: 34174748
Intelligible speech is produced by creating varying internal local muscle groupings-i.e., functional units-that are generated in a systematic and coordinated manner. There are two major challenges in characterizing and analyzing...
10.
Etzel R, Mekkaoui C, Ivshina E, Reese T, Sosnovik D, Hansen S, et al.
Magn Reson Med
. 2021 May;
86(4):2276-2289.
PMID: 34028882
Purpose: Three 64-channel cardiac coils with different detector array configurations were designed and constructed to evaluate acceleration capabilities in simultaneous multislice (SMS) imaging for 3T cardiac MRI. Methods: Three 64-channel...