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In this study, H2O2 production in the sternomastoid muscle was compared between control and mdx mice by using carboxy-H2-DCFDA.
With quantitative CT analysis, the MMD of the injured biceps muscle was compared with injured and non-injured control muscles.
EMG of the injuredbiceps muscle was compared with that of control muscles (the injured (non-injected) brachialis muscle and non-injured (non-injected) contralateral biceps muscle).
There were no significant differences in the force produced at any of the stimulus frequencies when each muscle was compared between T+ and T0 individuals.
The MPR images were analysed and the mean muscle density (MMD) was calculated.The MMD of the injured (injected) biceps muscle was compared with control muscles (the injured (non-injected) triceps muscle and non-injured (non-injected) contralateral biceps muscle).
Similar(55)
Maximum isometric force, range of motion, and muscle tension of hamstring muscle were compared between training regimes incorporating localized vibrations and traditional leg curl.
T2 values of the muscle were compared using the same analysis.
The mean amplitude, duration, and number of phases of the MUPs of the injured biceps muscle were compared with injured and non-injured control muscles.
Therefore, the results relating to different metals in the fish muscle are compared with the U.S. Recommended Dietary Allowance (RDA) supplied by hundred grams (100 g) serving fish muscle to prove the contention.
Three experimental groups from two phenotypically distinct muscles (i.e. the fast GM and slow SOL muscle) were compared in this experiment: group 1: 'α/β CaMKII-transfection', group 2: ' control-transfection', and group 3: 'non-transfected controls'.
When tissue-specific differentially methylated regions (T-DMRs) in human and mouse tissues including heart, colon, kidney, testis, spleen, and muscle were compared, they could be distinguished clearly according to the corresponding tissues based on their methylation status [ 27].
Related(20)
force was compared
power was compared
potency was compared
weight was compared
strength was compared
tone was compared
muscle was resected
muscle was separated
muscle was broken
muscle was removed
muscle was strained
muscle was described
muscle was divided
muscle was determined
muscle was calculated
muscle was connected
muscle was composed
muscle was found
muscle was lacerated
muscle was done
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