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1 roximately 15 s isometric contraction of the vastus lateralis muscle.
2 autophagy-related genes were measured in the vastus lateralis muscle.
3 tely the same level of TBC1D1 in biopsies of vastus lateralis muscle.
4 ere infused, with measurements in plasma and vastus lateralis muscle.
5 IGF1 increase was weakly significant only in Vastus lateralis muscle.
6 sions of stable isotopes and biopsies of the vastus lateralis muscle.
7 c tracers of amino acids and biopsies of the vastus lateralis muscle.
8 iceps femoris muscle group and biopsy of the vastus lateralis muscle.
9 ests and greater cross-sectional area of the vastus lateralis muscle.
10 methacholine and sodium nitroprusside in the vastus lateralis muscle.
11 ise rapidly activated ERK and aPKCs in mouse vastus lateralis muscles.
12 nd to be consistently down-regulated in OPMD vastus lateralis muscles.
13                              A biopsy of the vastus lateralis muscle and submaximal incremental exerc
14 evels significantly decrease from midlife in vastus lateralis muscles and highly correlate with muscl
15 o determine mRNA levels in biopsies from the vastus lateralis muscle at baseline, after 5 and 12 week
16 ne in oxidative capacity per volume of human vastus lateralis muscle between nine adult (mean age 38.
17 mp with [3-(3)H]glucose/indirect calorimetry/vastus lateralis muscle biopsies before and after 16 wee
18 emoral arterial and venous blood samples and vastus lateralis muscle biopsies during a stable isotope
19 lycemic clamps with indirect calorimetry and vastus lateralis muscle biopsies in eight type 2 diabeti
20 e subjects completed 7 days of bed rest with vastus lateralis muscle biopsies obtained before and aft
21 ts with cirrhosis and eight controls, serial vastus lateralis muscle biopsies were obtained before an
22                                              Vastus lateralis muscle biopsies were obtained before an
23           Before and after the intervention, vastus lateralis muscle biopsies were obtained.
24                                              Vastus lateralis muscle biopsies were performed to inves
25 bilization upper leg bilateral MRI scans and vastus lateralis muscle biopsies were performed to measu
26 lyses of quadriceps and in vitro analyses of vastus lateralis muscle biopsies were performed.
27          In nine subjects, muscle cells from vastus lateralis muscle biopsies were placed into tissue
28                     Venous blood samples and vastus lateralis muscle biopsy samples were obtained dur
29 myofibers and primary myotubes prepared from vastus lateralis muscle biopsy specimens.
30                       After each treatment a vastus lateralis muscle biopsy was obtained.
31                                   Individual vastus lateralis muscle fibers (n = 264) were clipped in
32                           Rectus femoris and vastus lateralis muscle fibers were analyzed for cytochr
33                                              Vastus lateralis muscle fibres from six young men (YM; 2
34           We determined cytokines levels the vastus lateralis muscle from genetically confirmed expPA
35              Mitochondria were isolated from vastus lateralis muscle from lean and insulin-sensitive
36 ene expression profile of 7,070 genes in the vastus lateralis muscle from rhesus monkeys.
37     We studied IkappaB/NFkappaB signaling in vastus lateralis muscle from six subjects with type 2 di
38             Type II muscle fiber area of the vastus lateralis muscle increased with RT for all men co
39 oute for vaccine administration and that the vastus lateralis muscle is preferred over the deltoid mu
40  intramuscular adrenaline into the middle of vastus lateralis muscle is the optimum treatment.
41                  Here we report increases in vastus lateralis muscle mitochondrial ATP production cap
42 e-specific phosphorylation of IRS-1 in human vastus lateralis muscle obtained by needle biopsy basall
43  method of single-fiber analysis was used on vastus lateralis muscle obtained by percutaneous biopsy
44 side (42 mm; endothelium-independent) in the vastus lateralis muscle of 17 healthy adults (seven wome
45  microdialysis probes were inserted into the vastus lateralis muscle of 6 healthy male subjects and p
46 compared with controls, rectus abdominis and vastus lateralis muscle of critically ill patients showe
47 T) ; used here as a proxy for LT) within the vastus lateralis muscle of eight young adults during a s
48 e tags from polyadenylated RNA obtained from vastus lateralis muscle of healthy young men.
49 he activities of PKClambda/zeta and PDK-1 in vastus lateralis muscle of lean, obese, and obese/type 2
50 ber number and fiber type composition in the vastus lateralis muscle of the CR50 rats.
51 our weeks later, motoneurons innervating the vastus lateralis muscle of the quadriceps were labeled w
52 methacholine and sodium nitroprusside in the vastus lateralis muscle of young healthy humans.
53                 Biopsy samples obtained from vastus lateralis muscles of both legs before and after e
54 single motor unit contractions in soleus and vastus lateralis muscles of healthy individuals.
55  obtained from the involved and non-involved vastus lateralis muscle on 27 subjects who had an anteri
56        Each subject had two open biopsies of vastus lateralis muscle; one at rest and one 3-6 weeks l
57 ialis muscle was larger in comparison to the vastus lateralis muscle over all the different TD subtyp
58  Needle biopsies samples were taken from the vastus lateralis muscle Pre-ULLS, Post-ULLS and after 3
59                                              vastus lateralis muscle samples were collected before ex
60                        Fast glycolytic white vastus lateralis muscle showed sarcomere degeneration an
61 titial glucose, lactate, and pyruvate in the vastus lateralis muscle using microdialysis.
62                                              Vastus lateralis muscle was obtained by percutaneous bio
63                                              Vastus lateralis muscle was obtained by percutaneous bio
64                       In additional studies, vastus lateralis muscle was obtained by percutaneous bio
65                                              Vastus lateralis muscle was obtained from healthy lean i
66 Under local anesthesia, approximately 1 g of vastus lateralis muscle was obtained from six healthy su
67                                              Vastus lateralis muscle was sampled before, immediately
68  18, and 24 months postburn, a biopsy of the vastus lateralis muscle was taken and snap frozen at -80
69 horus magnetic resonance spectroscopy of the vastus lateralis muscle was used to calculate ATP flux (
70                               Similarly, the vastus lateralis muscle weights and fiber cross-sectiona
71 ter, motoneurons innervating the ipsilateral vastus lateralis muscle were labeled with cholera toxin-
72                           Needle biopsies of vastus lateralis muscle were obtained before and after e
73                         Muscle biopsies from vastus lateralis muscle were obtained from all three gro
74                            Biopsies from the vastus lateralis muscle were taken before and after a 5-
75                                  Biopsies of vastus lateralis muscle were taken before exercise, afte
76                           Needle biopsies of vastus lateralis muscle were taken from nine subjects at