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Melissa T Hooijmans

Explore the profile of Melissa T Hooijmans including associated specialties, affiliations and a list of published articles. Areas
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Citations 370
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Recent Articles
1.
Hooijmans M, Lockard C, Zhou X, Coolbaugh C, Guzman R, Kersh M, et al.
PLoS One . 2025 Mar; 20(3):e0302675. PMID: 40063556
Skeletal muscle architecture is a key determinant of muscle function. Architectural properties such as fascicle length, pennation angle, and curvature can be characterized using Diffusion Tensor Imaging (DTI), but acquiring...
2.
Rauh S, Cameron D, Gurney-Champion O, Smithuis F, Maas M, Froeling M, et al.
Sci Rep . 2024 Dec; 14(1):31998. PMID: 39738708
Repeated muscle micro-trauma may cause severe muscle damage. Diffusion tensor imaging (DTI) exhibits sensitivity to microstructural changes in skeletal muscle. We hypothesize that longer diffusion times enhance sensitivity to micro-trauma...
3.
Secondulfo L, Hooijmans M, Suskens J, Mazzoli V, Maas M, Tol J, et al.
PLoS One . 2024 Nov; 19(11):e0314063. PMID: 39536037
[This corrects the article DOI: 10.1371/journal.pone.0261777.].
4.
Lockard C, Hooijmans M, Zhou X, Coolbaugh C, Damon B
NMR Biomed . 2024 Jul; 37(11):e5205. PMID: 38967274
Diffusion-tensor (DT)-MRI tractography provides information about properties relevant to muscle health and function, including estimates of architectural properties such as fascicle length, pennation angle, and curvature and diffusion properties such...
5.
Hooijmans M, Jeneson J, Jorstad H, Bakermans A
J Magn Reson Imaging . 2024 May; 61(2):535-560. PMID: 38726984
Magnetic resonance (MR) imaging (MRI) is routinely used to evaluate organ morphology and pathology in the human body at rest or in combination with pharmacological stress as an exercise surrogate....
6.
Hooijmans M, Lockard C, Zhou X, Coolbaugh C, Guzman R, Kersh M, et al.
bioRxiv . 2024 Apr; PMID: 38645028
Skeletal muscle architecture is a key determinant of muscle function. Architectural properties such as fascicle length, pennation angle, and curvature can be characterized using Diffusion Tensor Imaging (DTI), but acquiring...
7.
Barbieri M, Hooijmans M, Moulin K, Cork T, Ennis D, Gold G, et al.
Sci Rep . 2024 Apr; 14(1):8253. PMID: 38589478
This work presents a deep learning approach for rapid and accurate muscle water T with subject-specific fat T calibration using multi-spin-echo acquisitions. This method addresses the computational limitations of conventional...
8.
Rauh S, Suskens J, Monte J, Smithuis F, Gurney-Champion O, Tol J, et al.
Eur Radiol Exp . 2024 Mar; 8(1):38. PMID: 38499843
Background: Intravoxel incoherent motion (IVIM)-corrected diffusion tensor imaging (DTI) potentially enhances return-to-play (RTP) prediction after hamstring injuries. However, the long scan times hamper clinical implementation. We assessed accelerated IVIM-corrected DTI...
9.
Hooijmans M, Veeger T, Mazzoli V, van Assen H, De Groot J, Gottwald L, et al.
NMR Biomed . 2023 Dec; 37(3):e5064. PMID: 38062865
Static quantitative magnetic resonance imaging (MRI) provides readouts of structural changes in diseased muscle, but current approaches lack the ability to fully explain the loss of contractile function. Muscle contractile...
10.
Zhou X, Lockard C, Hooijmans M, Damon B
Magn Reson Med . 2023 Dec; 91(4):1337-1353. PMID: 38044800
Purpose: To quantify the effects of the intrinsic signal pattern, image acquisition conditions, and data analysis conditions on diffusion-tensor MRI (DTMRI) tractography-based muscle architecture estimates using a sampling-reconstruction assessment framework....