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1  innervate primarily the contralateral lower facial muscles.
2 l changes caused by the movement of specific facial muscles.
3 ognition of actions associated with specific facial muscles.
4 g co-activation of specific jaw, tongue, and facial muscles.
5                       By combining different facial muscle actions, called action units, humans can p
6 limited in number, volitional movements (eg, facial muscle activity, head movements, shoulder shrugs)
7 es to motoneurones innervating the different facial muscles and presynaptic synchronization of input
8 , some hypaxial precursors of the body, some facial muscles and the central nervous system.
9 ctopic ANF promoter activity in the kidneys, facial muscles, and aortic arch artery-associated muscle
10                        We show that specific facial muscles are missing in mice lacking both MyoR and
11 ansmission should focus on proximal limb and facial muscles, as well as clinically weak muscles.
12 tify facial expression by coding patterns of facial muscle contraction and relaxation.
13 as stepping, turning, raising of the head or facial muscle contraction in the absence of treadmill mo
14                                              Facial muscles drive whisker movements, which are import
15  this gap by contrasting the coordination of facial muscles during different types of rhythmic orofac
16       It is concluded that co-contraction of facial muscles during some facial expressions are accomp
17 lts indicated no selective activation of the facial muscles for the expressions in 4-month-old infant
18 ies including velo-pharyngeal insufficiency, facial muscle hypotonia and feeding difficulties, in par
19 eparate control that can be exhibited by the facial muscles involved.
20 pressions are indeed created by moving one's facial muscles, it is logical to assume that our visual
21 atterns of weakness or incoordination of the facial muscles, lips, tongue, palate, pharyngeal constri
22 NAs of these peptides were injected into the facial muscle of adult rats prior to facial nerve avulsi
23 ne (Adv.RSV-beta-gal) were injected into the facial muscles of neonatal rats the vectors were retrogr
24 ic drive is not present between all possible facial muscle pairs and suggests a functional role for t
25  transcription factors expressed in specific facial muscle precursors.
26      This was followed by enlargement of the facial muscles that modulate echolocation calls, which i
27             The results show that bulbar and facial muscle weakness and wasting are associated with s
28 ming the test, particularly in patients with facial muscle weakness or bulbar dysfunction.
29 ded simultaneously from ipsilateral pairs of facial muscles while subjects made three different commo

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