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1 oenzyme A dehydrogenase enzyme activities in quadriceps muscle.
2  maximum voluntary contractions of the right quadriceps muscle.
3 splantation underwent muscle biopsy from the quadriceps muscle.
4 nly for maximum standardized uptake value in quadriceps muscles.
5 le group involved in physical activity - the quadriceps muscles.
6 MRS) transmit-receive surface coil under the quadriceps muscle allowed estimation of [PCr]; .V(O2) wa
7 -receive surface coil placed under the right quadriceps muscle allowed estimation of intramuscular [P
8 y (wild-type, WT) and dystrophic (mdx) mouse quadriceps muscles and evaluated transcript levels of th
9 s, CP-640186 lowered hepatic, soleus muscle, quadriceps muscle, and cardiac muscle malonyl-CoA with E
10 onths of age, there was gross atrophy of the quadriceps muscle, and other hindlimb muscles were varia
11  and ear), heart (heart base and ventricle), quadriceps muscle, and the tibiotarsal joint at 1, 2, 4,
12 6 (0.82-0.99), respectively, for gluteal and quadriceps muscles, and WSCV for gluteal and quadriceps
13          18F-FDG PET/CT scans of gluteal and quadriceps muscle area were obtained with arterial input
14                                    Change in quadriceps muscle atrophy was significantly associated w
15 patients receiving placebo exhibited greater quadriceps muscle atrophy, with a -14.3 +/- 3.6% change
16 d increase in UCP3 mRNA levels occurs in rat quadriceps muscle between 12 and 24 h of food removal.
17                                              Quadriceps muscle biopsies obtained before and after 10
18 n intravenously to human subjects and needle quadriceps muscle biopsies were taken to measure [13C]le
19 see text]o2max) and microcirculation loss on quadriceps muscle biopsy (in CD31(+) immunofluorescence
20 ial occlusion pressures; cardiac output; and quadriceps muscle blood flow and oxygen tension (PMo2).
21 ts in significant contractile fatigue of the quadriceps muscle but not of the diaphragm in healthy, r
22         H reflexes were induced in the human quadriceps muscle by electrical stimulation of the femor
23               Thus, we studied rat heart and quadriceps muscles by immunohistochemistry using isoform
24 ed significantly improved motor performance, quadriceps muscle contractility, and sciatic nerve condu
25                   Inhibition declined during quadriceps muscle contraction under all conditions exami
26 onymous recurrent inhibition during isolated quadriceps muscle contraction, but to a much lesser exte
27                                              Quadriceps muscle cross-sectional area increased in pati
28 easured by dual-energy x-ray absorptiometry, quadriceps muscle cross-sectional area measured by magne
29 < 0.004) and PCr/Pi ratios (P < 0.04) in the quadriceps muscles during rest.
30 a phosphorus magnetic resonance spectroscopy quadriceps muscle exercise-recovery study before and aft
31 y muscles (IRL) exacerbated exercise-induced quadriceps muscle fatigue (Q(tw) = -12 +/- 8% IRL-CTRL v
32 ible to work of breathing-related changes in quadriceps muscle fatigue.
33 en fluorescent protein (EGFP) in transfected quadriceps muscle fibers in living mice subjected to con
34  (COPD) develop contractile fatigue of their quadriceps muscle following endurance exercise.
35 ein lipase (hLPL) mRNA was detectable in the quadriceps muscle for at least 21 days.
36 ation (NMES), applied to the surgical limb's quadriceps muscle for the first 6 weeks following surger
37  sarcoglycan-positive fibers detected in the quadriceps muscle from all 14 mice analyzed.
38 he IC/MS assay was used to quantitate OAs in quadriceps muscle from sedentary mice compared to fatigu
39           Five differences were conserved in quadriceps muscles from dystrophic mice treated with spi
40             The morphology of the soleus and quadriceps muscles from MGSKO mice appeared normal.
41 ulate in obesity, we performed lipidomics on quadriceps muscles from obese mice with impaired glucose
42                           Involvement of the quadriceps muscle group in knee osteoarthritis is receiv
43            Following surgery to reattach his quadriceps muscle, he experienced an emotional period in
44 describe the biomechanical properties of the quadriceps muscle in ICU survivors 12 months after ICU d
45 kinase activation) and GLUT4-GFP-transfected quadriceps muscle in living, anesthetized mice either mu
46 ulted in increased fatigue resistance of the quadriceps muscle in patients with COPD.
47 be more severely affected by weakness of the quadriceps muscles in individuals with knee OA who have
48                                              Quadriceps muscle intracellular pH (pH(i)) was more acid
49  of archvillin protein was observed in human quadriceps muscle lacking gamma-SG.
50 ty in patients with severe COPD by enhancing quadriceps muscle mass and function.
51 n, exercise training significantly increased quadriceps muscle mitochondrial capacity by 24% and VO2
52                  Acceptable M-waves from the quadriceps muscle (not obscured by stimulus artifact) we
53 tudy was to determine whether fatigue of the quadriceps muscle occurs after high intensity cycle exer
54    In conclusion, contractile fatigue of the quadriceps muscle occurs after high intensity cycle exer
55 Muscle biopsy samples were obtained from the quadriceps muscle of both the control and exercised legs
56 rotein expression and were injected into the quadriceps muscles of BALB/c mice to measure specific an
57 wed many lipid droplets within the psoas and quadriceps muscles of dysferlin-deficient A/J(dys-/-) mi
58                   Levels of total ATP in the quadriceps muscles of the subjects were determined durin
59 r 2 kinase than were observed in Mtm1 p.R69C quadriceps muscle or in muscles from wild-type littermat
60 ange, minute ventilation, blood lactate, and quadriceps muscle pH and phosphorylation potential by 31
61 injection of pMCKhLPL into the peritoneum or quadriceps muscle results in plasma triglyceride reducti
62                                   We studied quadriceps muscle samples from 24 patients with genetica
63                                      Smaller quadriceps muscle size, as measured by ultrasound in the
64 ne of B. burgdorferi in the ear, heart base, quadriceps muscle, skin, and tibiotarsal joint tissue of
65 aximal exercise performance, respiratory and quadriceps muscle strength and endurance and quality-of-
66                                  Deficits in quadriceps muscle strength and physical performance are
67 e measures included demographic information, quadriceps muscle strength, and QA using a burst-superim
68                                              Quadriceps muscle strengthening is a common goal in the
69 idation in myocytes cultured from human male quadriceps muscle taken from subjects with varied BMI, f
70 quadriceps muscles, and WSCV for gluteal and quadriceps muscles was 2.2% and 3.6%, respectively.
71                                              Quadriceps muscle weakness is an important contributor t
72 rmine the kinetics of IL-6 secretion, intact quadriceps muscles were transfected with enhanced green

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