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1 teralis-medialis and gastrocnemius lateralis-medialis).
2 n-susceptible (MHN) fibres from human vastus medialis.
3 few other cells located in the amygdala pars medialis.
4 duce average muscular activity of the vastus medialis (30-60%), rectus femoris (30-38%), and gastrocn
5 heads, we show that the levator anguli oculi medialis, a muscle responsible for raising the inner eye
6 ravity level, the reduction in gastrocnemius medialis activation even appears to level off around 0.2
7 specific motor unit modes was 60% for vastus medialis and 45% for vastus lateralis.
8 rdless of the muscle group (vastus lateralis-medialis and gastrocnemius lateralis-medialis).
9  Some neurons in the nucleus preglomerulosus medialis and lateralis, central nucleus of the inferior
10 he motor units in two knee extensors (vastus medialis and lateralis, eight men) and two hand muscles
11 s pars alpha and beta, r. pontis oralis pars medialis and lateralis, r. subcuneiformis, r. peduncular
12 oduction: prolonged excitation in the vastus medialis and phase-advanced excitation (both early initi
13  quadricep femoris muscles (i.e., the vastus medialis and rectus femoris) and a calf muscle (i.e., ga
14 ssions (1 and 2 weeks apart), for the vastus medialis and vastus lateralis, respectively.
15 nguish intrinsic connectivity within nucleus medialis, and also label somata and terminals within oth
16 lateralis and medialis, vastus lateralis and medialis, and tibialis anterior).
17 ower limb joint kinematics and gastrocnemius medialis behavior during running at 1 g, simulated Marti
18  than men (greatest difference in the vastus medialis: coeff. = 0.214, p < 0.001).
19 s difficult to predict whether gastrocnemius medialis contractile behavior during running on Moon wil
20  in or near telencephalic area dorsalis pars medialis (Dm).
21 ndependently from those of the gastrocnemius medialis during ankle plantarflexion.
22 tromyograms were recorded from gastrocnemius medialis during voluntary, isometric 20-s ramp, plantarf
23  and stimulation-induced artefacts in vastus medialis electromyographic recordings elicited by sinuso
24        The FFA of the semitendinosus, vastus medialis, gluteus medius, and gastrocnemius muscles in t
25 ls from the gastrocnemius lateralis (GL) and medialis (GM) and the soleus (SOL) with grids of surface
26                            The gastrocnemius medialis (GM), gastrocnemius lateralis (GL) and soleus (
27 units per participant) and the gastrocnemius medialis (GM; up to 67 motor units per participant).
28          Compared to other teleosts, nucleus medialis has a distinctive cytoarchitecture in that most
29 nto both nucleus ventrolateralis and nucleus medialis identify sites which may be processing informat
30 itry, and the lateral line recipient nucleus medialis in the rostral hindbrain also express abundant
31 o, the inner ear is severely ventralised and medialised, in addition to displaying the previously rep
32 ely with higher co-contraction of the vastus medialis medial hamstrings prior to plate movement (r =
33 lity had higher co-contraction of the vastus medialis medial hamstrings than did those who reported h
34 on moment resulted in lower levels of vastus medialis-medial gastrocnemius muscle co-contractions (P
35                                   The vastus medialis muscle was larger in comparison to the vastus l
36 endinous junction (MTJ) of the gastrocnemius medialis muscle was measured by ultrasonography in eight
37           Motoneurons innervating the vastus medialis muscle were selectively killed by intramuscular
38 motor units between the vastus lateralis and medialis muscles during the knee extension tasks.
39 ive to the human vastus lateralis and vastus medialis muscles during the production of isometric knee
40 MUs) in the vastus lateralis (VL) and vastus medialis muscles following ACLR.
41  EMD in Vastus Lateralis (p = 0.001), Vastus Medialis Oblique (p = 0.003), and Semitendinosus (p = 0.
42 CLBP in Vastus Lateralis (p = 0.010), Vastus Medialis Oblique (p = 0.017), Semitendinosus (p = 0.002)
43                                   The vastus medialis oblique (VMO) of the QF complex is particularly
44 edial patellofemoral ligament and the vastus medialis obliquus are the primary restraints to lateral
45 ) were administered directly into the vastus medialis of anesthetized dogs.
46 ses of insulin were injected into the vastus medialis of one hind limb (INJ); the contralateral limb
47 m-binding proteins were expressed in nucleus medialis of the thalamus.
48                          The ventroposterior medialis parvocellularis (VPMpc) nucleus of the thalamus
49 xternal power-producing muscles (e.g. vastus medialis) showing prolonged excitation and muscles that
50       The biomechanical contributions of the medialis, the lateral retinaculum, the vastus lateralis
51 led neurons are located primarily in nucleus medialis, the principal termination site of lateral line
52 er limb muscles (gastrocnemius lateralis and medialis, vastus lateralis and medialis, and tibialis an
53 es (medial and lateral gastrocnemius, vastus medialis, vastus lateralis and rectus femoris).
54  located in the preoptic area, amygdala pars medialis, ventral thalamus, dorsal hypothalamic nucleus,
55 were recorded from vastus lateralis (VL) and medialis (VM) and decomposed into individual MU discharg
56             Vastus lateralis (VL) and vastus medialis (VM) in the rat produce identical knee torques
57 ree monoarticular quadriceps muscles (vastus medialis [VM], vastus lateralis [VL], and vastus interme
58 tor units in the vastus lateralis and vastus medialis were investigated during voluntary force contra
59 Dc) and a rostral (MEDr) division of nucleus medialis which are separated by a dorsomedial division o