| Literature DB >> 27347460 |
Anke Dahlmann1, Matthias Hammon2, Christoph Kopp1, Peter Linz2, Alexander Cavallaro2, Hannes Seuss2, Kai-Uwe Eckardt1, Friedrich C Luft3, Jens Titze4, Michael Uder2.
Abstract
BACKGROUND: (23)Na magnetic resonance imaging ((23)Na-MRI) is able to measure Na(+) in vivo in humans and allows quantification of tissue sodium distribution. We now tested the utility of (23)Na-MRI technique in detecting and assessing sports-related acute muscular injury. CASEEntities:
Keywords: Assessment; Healing; Magnetic resonance imaging; Quantification; Sodium; Sports injury
Year: 2016 PMID: 27347460 PMCID: PMC4899351 DOI: 10.1186/s40064-016-2193-6
Source DB: PubMed Journal: Springerplus ISSN: 2193-1801
Scanning protocol
| Localizer | T1-weighted fast-low-angle-shot (FLASH)-sequence | Gradient echo 23Na sequence (acquired 4 times successively) | |
|---|---|---|---|
| Total acquisition time (TA; min) | 0.15 | 2.08 | 3.25 |
| Echo time (TE; ms) | 4 | 2.46 | 2.07 |
| Repetition time (TR; ms) | 8.6 | 250 | 100 |
| Flip angle (FA; °) | 20 | 60 | 90 |
| Averages | 2 | 2 | 32 |
| Bandwidth (Hz/pixel) | 320 | 310 | 430 |
| Field of view (FoV; mm) | 192 | 192 | 192 |
| Matrix (pixel) | 256 | 256 | 64 |
| Resolution (mm) | 0.75 × 0.75 × 10 | 0.75 × 0.75 × 5 | 3 × 3 × 30 |
Fig. 11H-MR imaging [T1-weighted fast-low-angle-shot (FLASH)-sequence, left] and 23Na-MR imaging (right) of both lower legs immediately after injury. The left leg shows a half-moon shaped, hyperintense Na+ rich area on the medial side (arrow). Highest muscle Na+ signal could be found in the region of the left medial gastrocnemius muscle (there was a 2.4-fold increase in Na+ concentration compared to the corresponding soft tissue of the contralateral non-affected leg, 43.5 vs. 18.0 mmol/l). The calibration tubes below the lower legs contain 10, 20, 30 and 40 mmol/l NaCl. Gray-scale measurements of the tubes served as calibration standards for 23Na-MRI by relating intensity to a concentration in a linear trend analysis
Fig. 21H-MR imaging [T1-weighted fast-low-angle-shot (FLASH)-sequence, left] and 23Na-MR imaging (right) of both lower legs 2 weeks after injury. The area of hyperintense Na+ rich tissue was reduced, but could still be clearly visualized at the level of the left medial gastrocnemius muscle (arrow, Na+ concentration compared to the corresponding soft tissue of the contralateral non-affected leg: 37.5 vs. 18.5 mmol/l). Muscle function of the leg was completely restored by this point
Fig. 31H-MR imaging [T1-weighted fast-low-angle-shot (FLASH)-sequence, left] and 23Na-MR imaging (right) of both lower legs 2 month after injury showed only a marginal Na+ rich region in the medial aspect of the left gastrocnemius muscle (arrow, Na+ concentration compared to the corresponding soft tissue of the contralateral non-affected leg: 21.5 vs. 18.5 mmol/l)