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1 s and gastrocnemius and contraction force of triceps surae.
2 uctor pollicis brevis, anterior tibialis and triceps surae.
3  was determined by stereological analysis of triceps surae (a limb muscle) and extraocular muscles of
4 le, fibre length and muscle thickness in the triceps surae complex in man in response to changes in a
5           Voluntary isometric contraction of triceps surae elicited a significant HR change in the fi
6                 Sustained passive stretch of triceps surae for 1 min, by dorsiflexion of the foot, ca
7  surae motoneurons from animals in which the triceps surae H-reflex in one leg had been increased (HR
8          Operant conditioning of the primate triceps surae H-reflex, the electrical analog of the spi
9 e analyzed the synaptic terminal coverage of triceps surae motoneurons from animals in which the tric
10                   Static contractions of the triceps surae muscle of one hindlimb were evoked by elec
11 es elicited during static contraction of the triceps surae muscle.
12 hetized rats having one of the nerves to the triceps surae muscles either untreated or cut and immedi
13 ex evoked by intermittent contraction of the triceps surae muscles in decerebrated, unanaesthetized r
14                          We suggest that the triceps surae muscles maintain balance by predictively c
15            Our measurements suggest that the triceps surae muscles maintain balance via a spring-like
16 are components of NADPH oxidase, compared to triceps surae muscles of 'freely perfused' rats.
17                Western blots showed that the triceps surae muscles of 'ligated' rats expressed more N
18 n of ribosomes) in response to detraining in triceps surae muscles of C57BL/6 mice.
19 alpain and cathepsin L, were measured in the triceps surae muscles of wild-type (WT) and MuRF1-knocko
20     Resistive force and electromyograms from triceps surae muscles were measured during dorsiflexion
21  receiving group III afferent input from the triceps surae muscles.
22 ly identified group Ia muscle afferents from triceps surae or plantaris muscles were labeled intraaxo
23                          The response of the triceps surae (TS) and tibialis anterior (TA) muscles to
24 ed that segmental reflex excitability of the triceps surae was also modulated in a manner associated
25 ressor response to isometric exercise of the triceps surae was examined in the trained dominant limb
26 the present study, static contraction of the triceps surae was induced by electrical stimulation of L
27 ally evoked isometric exercise (Stim) of the triceps surae was performed for 2 min at 30 % maximum vo
28 CMT Neuropathy Score); in fact, the dominant triceps surae was slightly stronger than the non-dominan
29                                    PS of the triceps surae was tested in 14 healthy human volunteers.

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