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1 n-susceptible (MHN) fibres from human vastus medialis.
2 few other cells located in the amygdala pars medialis.
3 Some neurons in the nucleus preglomerulosus medialis and lateralis, central nucleus of the inferior
4 s pars alpha and beta, r. pontis oralis pars medialis and lateralis, r. subcuneiformis, r. peduncular
5 oduction: prolonged excitation in the vastus medialis and phase-advanced excitation (both early initi
7 nguish intrinsic connectivity within nucleus medialis, and also label somata and terminals within oth
11 nto both nucleus ventrolateralis and nucleus medialis identify sites which may be processing informat
12 itry, and the lateral line recipient nucleus medialis in the rostral hindbrain also express abundant
13 o, the inner ear is severely ventralised and medialised, in addition to displaying the previously rep
14 ely with higher co-contraction of the vastus medialis medial hamstrings prior to plate movement (r =
15 lity had higher co-contraction of the vastus medialis medial hamstrings than did those who reported h
16 on moment resulted in lower levels of vastus medialis-medial gastrocnemius muscle co-contractions (P
17 endinous junction (MTJ) of the gastrocnemius medialis muscle was measured by ultrasonography in eight
19 ive to the human vastus lateralis and vastus medialis muscles during the production of isometric knee
20 edial patellofemoral ligament and the vastus medialis obliquus are the primary restraints to lateral
22 ses of insulin were injected into the vastus medialis of one hind limb (INJ); the contralateral limb
25 xternal power-producing muscles (e.g. vastus medialis) showing prolonged excitation and muscles that
27 led neurons are located primarily in nucleus medialis, the principal termination site of lateral line
29 located in the preoptic area, amygdala pars medialis, ventral thalamus, dorsal hypothalamic nucleus,
30 Dc) and a rostral (MEDr) division of nucleus medialis which are separated by a dorsomedial division o
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