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1 or bilateral functional overload (FO) of the plantaris muscle.
2 ntaris motoneurons to innervate a fast quail plantaris muscle.
3 e primary myosin isoform was observed in the plantaris muscle.
4 hing pattern normally observed in chick slow plantaris muscles.
5 ate synthase activity in both the soleus and plantaris muscles (26.2 +/- 1.6 versus 30.7 +/- 3.4 and
6 ical ablation of the synergic muscles of the plantaris muscle, a fast muscle susceptible to contracti
7 n-stimulated p38 MAPK phosphorylation in the plantaris muscle and Akt phosphorylation in both muscles
9 and morphological analyses of the soleus and plantaris muscles, and Northern analyses of muscle contr
12 rease of Pgc-1alpha mRNA expression in mouse plantaris muscle, concurrent with an activation of the p
13 binding increased with nuclear extracts from plantaris muscle exposed to mechanical overload, a stimu
16 On the seventh day, the gastrocnemius-soleus-plantaris muscle group was isolated and snap frozen, or
17 e used a functional overload model to induce plantaris muscle hypertrophy by surgically removing the
18 ear moduli for the lateral gastrocnemius and plantaris muscles in a 7-T MR imager, from which the mec
20 ablation, which promotes hypertrophy of the plantaris muscle, increased Ser(2448) phosphorylation.
22 cessary for skeletal muscle hypertrophy, the plantaris muscle of adult Pax7-DTA mice was subjected to
23 eases in autophagy protein expression in the plantaris muscle of sedentary muscle-specific Pgc-1alpha
24 hereas fast glycolytic tibialis anterior and plantaris muscles underwent atrophy (11.6 and 13.3%, res
25 eletal muscle hypertrophy was induced in the plantaris muscle using the functional overload (FO) mode
26 ired growth in 1 week overloaded fast-twitch plantaris muscles (via unilateral gastrocnemius ablation
27 up Ia muscle afferents from triceps surae or plantaris muscles were labeled intraaxonally with horser
28 sms regulating NKCC activity, rat soleus and plantaris muscles were stimulated ex vivo by insulin or
29 ific activity measured in control soleus and plantaris muscles when compared with wild type transgene
30 rload induced progressive hypertrophy of the plantaris muscle which was associated with significant i
31 e used RNA-seq to analyse gene expression in plantaris muscles while monitoring respiration, arterial
33 the soleus muscle and type IIa fibers in the plantaris muscle, with corresponding increases in interm
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