Multi-parametric quantitative magnetic resonance imaging of the upper arm muscles of patients with spinal muscular atrophy
Autor: | Melissa T. Hooijmans, Laura E. Habets, Sandra A. M. van den Berg‐Faay, Martijn Froeling, Fay‐Lynn Asselman, Gustav J. Strijkers, Jeroen A. L. Jeneson, Bart Bartels, Aart J. Nederveen, W. Ludo van der Pol |
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Přispěvatelé: | Radiology and Nuclear Medicine, AMS - Sports, AMS - Ageing & Vitality, Biomedical Engineering and Physics, AMS - Musculoskeletal Health, ACS - Atherosclerosis & ischemic syndromes, ACS - Heart failure & arrhythmias, ACS - Diabetes & metabolism |
Rok vydání: | 2021 |
Předmět: |
quantitative magnetic resonance imaging
Water Magnetic Resonance Imaging Muscular Atrophy Spinal Upper Extremity upper arm muscles Diffusion Tensor Imaging Arm Disease Progression Molecular Medicine Humans Radiology Nuclear Medicine and imaging skeletal muscle Muscle Skeletal Spectroscopy spinal muscular atrophy |
Zdroj: | NMR in biomedicine, 35(7):e4696. John Wiley and Sons Ltd |
ISSN: | 1099-1492 0952-3480 |
Popis: | Quantitative magnetic resonance imaging (qMRI) is frequently used to map the disease state and disease progression in the lower extremity muscles of patients with spinal muscular atrophy (SMA). This is in stark contrast to the almost complete lack of data on the upper extremity muscles, which are essential for carrying out daily activities. The aim of this study was therefore to assess the disease state in the upper arm muscles of patients with SMA in comparison with healthy controls by quantitative assessment of fat fraction, diffusion indices, and water T2 relaxation times, and to relate these measures to muscle force. We evaluated 13 patients with SMA and 15 healthy controls with a 3-T MRI protocol consisting of DIXON, diffusion tensor imaging, and T2 sequences. qMRI measures were compared between groups and related to muscle force measured with quantitative myometry. Fat fraction was significantly increased in all upper arm muscles of the patients with SMA compared with healthy controls and correlated negatively with muscle force. Additionally, fat fraction was heterogeneously distributed within the triceps brachii (TB) and brachialis muscle, but not in the biceps brachii muscle. Diffusion indices and water T2 relaxation times were similar between patients with SMA and healthy controls, but we did find a slightly reduced mean diffusivity (MD), λ1, and λ3 in the TB of patients with SMA. Furthermore, MD was positively correlated with muscle force in the TB of patients with SMA. The variation in fat fraction further substantiates the selective vulnerability of muscles. The reduced diffusion tensor imaging indices, along with the positive correlation of MD with muscle force, point to myofiber atrophy. Our results show the feasibility of qMRI to map the disease state in the upper arm muscles of patients with SMA. Longitudinal data in a larger cohort are needed to further explore qMRI to map disease progression and to capture the possible effects of therapeutic interventions. |
Databáze: | OpenAIRE |
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