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1 and in vitro contraction measurements of the extensor digitorum longus muscle.
2 zed myofilament Ca(2+) sensitivity of the KO extensor digitorum longus muscle.
3 r ischemia-induced obliteration in the mouse extensor digitorum longus muscle.
4  soleus muscle but not the atrophy-resistant extensor digitorum longus muscle.
5  and p94 and in Z-band disintegration in the extensor digitorum longus muscle.
6 ylation among soleus, tibialis anterior, and extensor digitorum longus muscles.
7  muscles (SOL) with no effect on fast twitch extensor digitorum longus muscles.
8 29%; P<0.05), increased protein synthesis in extensor digitorum longus muscles (13.21 +/- 1.09%; P<0.
9 Na+]i and [Na+]i/[K+]i ratios in fast-twitch extensor digitorum longus muscles 24 hrs after CLP compa
10 lucose uptake were assessed in incubated rat extensor digitorum longus muscle after preincubation for
11 sal and insulin-stimulated glucose uptake in extensor digitorum longus muscle, and adipocytes isolate
12 ic muscle force in old transgenic soleus and extensor digitorum longus muscles are 50% higher than in
13 llar proteolysis was determined in incubated extensor digitorum longus muscles as release of tyrosine
14 alpha2(-/-) muscles is reproduced in control extensor digitorum longus muscles by selectively inhibit
15  to similar increases in force generation in extensor digitorum longus muscles compared with those fr
16  in skMLCK protein expression in fast-twitch extensor digitorum longus muscle containing type IIa and
17         Insulin-stimulated glucose uptake in extensor digitorum longus muscle during the euglycemic-h
18 ater (n = 8) as above, and kidney, heart and extensor digitorum longus muscle (EDL) and soleus muscle
19 l times faster in actively contracting mouse extensor digitorum longus muscle (EDL) than soleus (SOL)
20             Absolute force production of the extensor digitorum longus muscle ex vivo was higher in m
21 ntractile characteristics were determined in extensor digitorum longus muscle ex vivo.
22 ulated glucose transport in mouse soleus and extensor digitorum longus muscles ex vivo.
23 tor-1 receptor (IGF-1R) activation in single extensor digitorum longus muscle fibers from adult C57BL
24                                Incubation of extensor digitorum longus muscle for 1 h with 2 mm 5-ami
25 nimals were terminally anaesthetized and the extensor digitorum longus muscles from both hindlimbs we
26                                    Incubated extensor digitorum longus muscles from CLP, sham-operate
27 lso be hyperactivated in O vs YA fast-twitch extensor digitorum longus muscles from Fischer(344) x Br
28        The analysis of the nerve terminal in extensor digitorum longus muscles from senescent mice sh
29 tely half of the junctions in rat soleus and extensor digitorum longus muscles have one TSC soma.
30 mpletely restore the function of fast-twitch extensor digitorum longus muscles in dystrophic mdx mice
31                                        Last, extensor digitorum longus muscles isolated from normal r
32                                 In addition, extensor digitorum longus muscles isolated from normal r
33      Potassium currents were measured in the extensor digitorum longus muscle of normal and mdx mice,
34 scle physiological analysis reveals that the extensor digitorum longus muscle of transgenic mice exhi
35 ndles of fibres were manually dissected from extensor digitorum longus muscles of 7- to 14-week-old m
36  3-fold increase in 2-deoxyglucose uptake in extensor digitorum longus muscles of control mice (0.47
37  two structural genes was measured in rabbit extensor digitorum longus muscles subjected to different
38 lin-stimulated glucose transport in isolated extensor digitorum longus muscle tissues and adipocytes.
39 mal tetanic stimulation frequency, intact KO extensor digitorum longus muscle was able to produce wil
40          Twenty-four hours after trauma, the extensor digitorum longus muscle was microsurgically exp
41                                          The extensor digitorum longus muscle weight and axon counts
42  femoral blood flow (FBF) and tension in the extensor digitorum longus muscle were recorded; isometri
43                              Isolated mutant extensor digitorum longus muscles were abnormally sensit
44 enty-four hours after operation, fast-twitch extensor digitorum longus muscles were isolated and incu
45 ane potential (RMP) in uninjured and injured extensor digitorum longus muscles were made to determine
46                                          Rat extensor digitorum longus muscles were preincubated for
47 LC phosphorylation and force potentiation in extensor digitorum longus muscle with low frequency elec
48                          Last, incubation of extensor digitorum longus muscles with GF109203X or rott
49 ific force of contraction of the fast-twitch extensor digitorum longus muscle yet had no effect on th

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