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Additionally, sand was found to induce lower levels of muscle soreness compared with grass [12].
Only low levels of muscle damage were detected following DNA injection and electrotransfer.
Higher levels of muscle EGFP expression were observed in animals receiving an immunosuppressant vector.
In addition, high levels of muscle oxidative stress lead to an excessive production of ROS and inflammation [60].
Associated with these decreases in transcript levels were correspondingly lower tissue levels of muscle specific glycogen synthase and activity.
In fact, in addition to improving neuromuscular capabilities, sand has been shown to produce lower levels of muscle soreness compared with grass [12].
Most of vibration-induced neuromuscular response occurs at the resonant frequencies of the tissues, concurring with the highest levels of muscle activity [23, 26 28].
Our results suggest that differential expression levels of muscle genes and isoforms are one determinant in the selectivity of muscle involvement in muscular dystrophies.
To investigate whether elastic resistance training can induce comparable levels of muscle activity as conventional machine training in patients with chronic stroke.
No significant difference was found when the plateau pressure and PaO2/FiO2 ratio were compared between the three levels of muscle relaxation defined by the TOF in the subgroup of patients with acute respiratory distress syndrome.
It covers multiple levels of muscle biosensor assessment, e.g. membrane voltage or contractile apparatus Ca2+ ion responses (force resolution 1 µN, 0 10 mN for the given sensor; [Ca2+] range ~ 100 nM–25 µM).
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