Erin L MacMillan
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Explore the profile of Erin L MacMillan including associated specialties, affiliations and a list of published articles.
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22
Citations
262
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Recent Articles
1.
Choles C, Archibald J, Ortiz O, MacMillan E, Zolch N, Kramer J
J Neurophysiol
. 2024 Oct;
132(5):1520-1529.
PMID: 39412567
Regional variations in glutamate levels across the cingulate cortex, decreasing rostral to caudal, have been observed previously in healthy volunteers with proton magnetic resonance spectroscopy (H-MRS) at 7 T. This...
2.
Morris S, Vavasour I, Smolina A, MacMillan E, Gilbert G, Lam M, et al.
Magn Reson Med
. 2022 Dec;
89(5):1809-1824.
PMID: 36511247
Purpose: We investigated the correlation, reproducibility, and effect of white matter fiber orientation for three myelin-sensitive MRI techniques: magnetization transfer ratio (MTR), inhomogeneous magnetization transfer ratio (ihMTR), and gradient and...
3.
Ge R, Humaira A, Gregory E, Alamian G, MacMillan E, Barlow L, et al.
Am J Psychiatry
. 2022 May;
179(7):500-508.
PMID: 35582784
Objective: The study objective was to investigate the predictive value of functional connectivity changes induced by acute repetitive transcranial magnetic stimulation (rTMS) for clinical response in treatment-resistant depression. Methods: Cross-sectional...
4.
Chan K, Hock A, Edden R, MacMillan E, Henning A
Magn Reson Med
. 2021 Aug;
86(6):2945-2956.
PMID: 34431549
Purpose: To combine metabolite cycling with J-difference editing (MC MEGA) to allow for prospective frequency correction at each transient without additional acquisitions and compare it to water-suppressed MEGA-PRESS (WS MEGA)...
5.
Hui S, Mikkelsen M, Zollner H, Ahluwalia V, Alcauter S, Baltusis L, et al.
Neuroimage
. 2021 Jul;
241:118430.
PMID: 34314848
Purpose: Heating of gradient coils and passive shim components is a common cause of instability in the B field, especially when gradient intensive sequences are used. The aim of the...
6.
Archibald J, MacMillan E, Enzler A, Jutzeler C, Schweinhardt P, Kramer J
Neuroimage
. 2020 Apr;
215:116794.
PMID: 32278899
Background: The role of the brain in processing pain has been extensively investigated using various functional imaging techniques coupled with well controlled noxious stimuli. Studies applying experimental pain have also...
7.
Dvorak A, Wiggermann V, Gilbert G, Vavasour I, MacMillan E, Barlow L, et al.
Magn Reson Med
. 2020 Feb;
84(3):1264-1279.
PMID: 32065474
Purpose: Myelin water imaging (MWI) provides a valuable biomarker for myelin, but clinical application has been restricted by long acquisition times. Accelerating the standard multi-echo T acquisition with gradient echoes...
8.
MacMillan E, Schubert J, Vavasour I, Tam R, Rauscher A, Taylor C, et al.
Mult Scler J Exp Transl Clin
. 2019 Oct;
5(4):2055217319879952.
PMID: 31662881
Background: Magnetic resonance spectroscopy quantitatively monitors biomarkers of neuron-myelin coupling (N-acetylaspartate (NAA)), and inflammation (total creatine (tCr), total choline (tCho), myo-inositol (mI)) in the brain. Objective: This study aims to...
9.
Liu H, Ljungberg E, Dvorak A, Lee L, Yik J, MacMillan E, et al.
J Neuroimaging
. 2019 Aug;
30(1):50-57.
PMID: 31407400
Background And Purpose: Acquiring and interpreting quantitative myelin-specific MRI data at an individual level is challenging because of technical difficulties and natural myelin variation in the population. To overcome these...
10.
Liu H, Rubino C, Dvorak A, Jarrett M, Ljungberg E, Vavasour I, et al.
J Neuroimaging
. 2019 Jul;
29(6):699-706.
PMID: 31347238
Background And Purpose: Myelin water imaging (MWI) is a magnetic resonance imaging technique that quantifies myelin in-vivo. Although MWI has been extensively applied to study myelin-related diseases in groups, clinical...