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1 ders are based on traditional medication and electric stimulation.
2 nderstand the response of retinal neurons to electric stimulation.
3 rtical brain regions undergoing transcranial electric stimulation.
4 tials in hindlimb muscles after transcranial electric stimulation.
5 cation by caffeine/epinephrine or programmed electric stimulation.
6 peared over 45-60 min after the onset of the electric stimulation.
7 se in diastolic [Ca2+]m were observed during electric stimulation.
8 e cathodal end of the testing aquarium after electric stimulation.
9 ar Ca(2+), severely attenuated the effect of electric stimulation.
10 ther increased by combined static stress and electric stimulation.
11                               When combined, electric stimulation (2 Hz) and beta(1)-adrenergic stimu
12 nial direct current stimulation, and cranial electric stimulation, (3) surgical approaches, including
13                                              Electric stimulation (4 Hz) of isolated fibroblasts resu
14        Computer models can make transcranial electric stimulation a better tool for research and ther
15                                 Transcranial electric stimulation aims to stimulate the brain by appl
16 roduced similar performance with acoustic or electric stimulation alone, but significantly lower perf
17                                              Electric stimulation also increased Fos-B immunoreactivi
18                                              Electric stimulation also potentiates TrkB tyrosine kina
19 emmal mechanical injuries of the response to electric stimulation and (ii) the integrity of the sarco
20                      We found that: (i) both electric stimulation and acetylcholine applied to the AC
21 e) in S2814D(+/+) mice in vivo or programmed electric stimulation and high extracellular Ca(2+) in S2
22  new treatment options, including functional electric stimulation and part-weight-supported walking.
23           Action potentials were produced by electric stimulation, and rapid solution changes were us
24           We evoked quantal release by brief electric stimulation at single synapses visualized with
25  The sharp neural ITD sensitivity found with electric stimulation at the appropriate intensity is enc
26 roup of animals had bilateral brachial nerve electric stimulation before hemorrhage (brachial nerve s
27 m collicular BF shift evoked by the cortical electric stimulation but do not change it into long-term
28                                   Programmed electric stimulation demonstrated increased susceptibili
29  mustached bat (Pteronotus parnellii), focal electric stimulation evokes BF shifts of cortical audito
30                                   Programmed electric stimulation ex vivo and optical mapping of volt
31 mmunofluorescence staining suggests that the electric stimulation facilitated the movement of TrkB fr
32 egration efficiency of combined acoustic and electric stimulation in eight actual cochlear-implant su
33 s, explaining the responses to intracerebral electric stimulation in epileptogenic and nonepileptogen
34  integration efficiency between acoustic and electric stimulation in the present subjects.
35  receptor binding assays, we show that field electric stimulation increased the number of TrkB on the
36 onal tissue engineering, mechanical loading, electric stimulation, modulation of substrate stiffness,
37  exercise (AE) and non-aerobic neuromuscular electric stimulation (NMES) are common interventions use
38 ed after suprathreshold transcranial magneto-electric stimulation of affected and unaffected hemisphe
39 inferior colliculus and AI elicited by focal electric stimulation of AI or auditory fear conditioning
40                                          (2) Electric stimulation of broad frequency-tuned MGBm neuro
41                        In the mustached bat, electric stimulation of cortical Doppler-shifted constan
42                                We found that electric stimulation of cortical duration-tuned neurons
43                                We found that electric stimulation of cortical neurons via the cortico
44 g three independent approaches, we show that electric stimulation of hippocampal neurons markedly enh
45 or MGBm neurons and found the following: (1) electric stimulation of narrowly frequency-tuned MGBv ne
46                           On the other hand, electric stimulation of neurons in the posterior divisio
47                          We found that focal electric stimulation of one of these three subdivisions
48 BF shift as does the conditioning; (ii) both electric stimulation of the AC and acetylcholine applied
49 changed by auditory conditioning, weak focal electric stimulation of the AC, or repetitive delivery o
50                                        Focal electric stimulation of the AI also evokes basically the
51 sed by conditioning can be explored by focal electric stimulation of the AI.
52                                              Electric stimulation of the auditory brainstem can also
53                                        Focal electric stimulation of the auditory cortex is well suit
54 ked by either normal acoustic stimulation or electric stimulation of the auditory nerve or the brains
55                                The effect of electric stimulation of the delay-tuned neurons on the c
56                                        Focal electric stimulation of the DSCF area evokes the BF shif
57                                        Focal electric stimulation of the FF area evokes "centrifugal"
58 ntral importance in non-invasive magnetic or electric stimulation of the human brain since electrical
59 ic stimulation and auditory conditioning do, electric stimulation of the primary auditory cortex (AI)
60 od cravings, we hypothesized that repetitive electric stimulation of the right DLPFC would lower food
61      After ablation, the complete programmed electric stimulation protocol (3 drive cycle length, 3 e
62  by either depolarizing agents or repetitive electric stimulation, rapidly and specifically increased
63 ial magnetic stimulation (TMS), transcranial electric stimulation (TES) and transcranial direct curre
64 of electric fields arising from transcranial electric stimulation (TES) in a nonhuman primate brain p
65                                 Transcranial electric stimulation (TES) is an emerging technique, dev
66                                 Transcranial electric stimulation (TES) reliably entrained neurons in
67  working hypothesis: in humans, transcranial electric stimulation (tES) with a time course that mimic
68 nalling patterns; here, we hypothesized that electric stimulation that activates the synaptic circuit
69                                   Programmed electric stimulation to induce monomorphic ventricular t
70                                              Electric stimulation triggers activation of Src and inos
71 cal responses were elicited by intracochlear electric stimulation using cochlear implants in adult he
72 ed Brugada type I ECG and in whom programmed electric stimulation was performed at our institution we
73 al and contralateral BD shifts evoked by the electric stimulation were identical to each other.
74    Ventricular arrhythmias during programmed electric stimulation were induced in 73 (18.1%) patients

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