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1 ulation by dopamine was reestablished with a GABAA receptor antagonist.
2 rgic transmission using local application of GABAA receptor antagonists.
3 eurons that were blockable by bicuculline, a GABA(A) receptor antagonist.
4 interictal bursts recorded in bicuculline, a GABA(A) receptor antagonist.
5 Ps, also detected at E16, were eliminated by GABA(A) receptor antagonist.
6 iontophoretic application of bicuculline, a GABA(A) receptor antagonist.
7 roxysteroids are also direct, noncompetitive GABA(A) receptor antagonists.
8 cell input resistance, which was reduced by GABA(A) receptor antagonists.
9 nd picrotoxin, three structurally dissimilar GABA(A) receptor antagonists.
10 mine receptor antagonists but was blocked by GABA(A) receptor antagonists.
11 t still evident when IPSPs were prevented by GABA(A) receptor antagonists.
12 increased by exogenous GABA and inhibited by GABA(A) receptor antagonists.
13 , the VMR was only consistently increased by GABA(A) receptor antagonists.
14 tained increase in [Cl-]i was not blocked by GABA(A) receptor antagonists.
15 icrotoxin, a gamma-aminobutyric acid type A (GABA(A)) receptor antagonist.
20 ne-induced oxytocin release was inhibited by GABAA receptor antagonists as well as by an oxytocin rec
22 Intracortical perfusion with the selective GABA(A) receptor antagonist bicuculline (0.1 microM, 140
23 tor antagonist strychnine (4 microM) and the GABA(A) receptor antagonist bicuculline (10 microM) dimi
24 abolished by co-application of GABA with the GABA(A) receptor antagonist bicuculline (40 microM).
25 method for study of small brain regions, the GABA(A) receptor antagonist bicuculline (50 muM) was inf
30 eptor agonist muscimol (1 nmol/side), or the GABA(A) receptor antagonist bicuculline methiodide (12.5
32 onist muscimol, or 5) glybenclamide plus the GABA(A) receptor antagonist bicuculline methiodide (BIC)
33 iovascular response to microinjection of the GABA(A) receptor antagonist bicuculline methiodide (BMI)
37 -anesthetized rats, passive diffusion of the GABA(A) receptor antagonist bicuculline methiodide from
38 the NMDA receptor antagonist MK-801 and the GABA(A) receptor antagonist bicuculline methiodide while
40 st concentrations used (1.0-2.5 microM), the GABA(A) receptor antagonist bicuculline produced an incr
41 Treatment of PKCepsilon-null mice with the GABA(A) receptor antagonist bicuculline restored cortico
42 receptor agonist muscimol, muscimol with the GABA(A) receptor antagonist bicuculline, and bicuculline
43 (3)H]NA release was partially blocked by the GABA(A) receptor antagonist bicuculline, and coapplicati
44 ctrical activity induced by injection of the GABA(A) receptor antagonist bicuculline, and the glutama
45 ng synaptic activity, via treatment with the GABA(A) receptor antagonist bicuculline, rapidly and rob
46 ng WIN55,212,2 actions were abolished by the GABA(A) receptor antagonist bicuculline, suggesting that
54 ation of the gamma-aminobutyric acid type A (GABA(A)) receptor antagonist bicuculline methiodide with
55 icroM CNQX, or 5 mM kynurenic acid) plus the GABA(A)-receptor antagonist bicuculline (BIC, 20 microM)
57 n (200 mum) occluded effects of CTOP but the GABAA receptor antagonist bicuculline (10 mum) did not.
58 , 0.25, 0.1 and 0.0625 microM doses) and the GABAA receptor antagonist bicuculline (3.0 and 1.0 micro
60 AM251 was rescued by coadministration of the GABAA receptor antagonist bicuculline at reactivation, i
61 tion of PSCs at ECl or by treatment with the GABAA receptor antagonist bicuculline confirmed that PSC
62 g the GABAA receptor agonist muscimol or the GABAA receptor antagonist bicuculline into the IC or NBM
63 DCN inhibition by DCN administration of the GABAA receptor antagonist bicuculline methiodide (BMI) a
66 t, tonic GABA currents, assessed either by a GABAA receptor antagonist bicuculline or a selective ext
68 itro, the potassium channel blocker 4-AP and GABAA receptor antagonist bicuculline together induced s
69 MePhe4,Gly-(ol)5]-enkephalin (DAMGO) and the GABAA receptor antagonist bicuculline were greatly depre
70 nociception induced by microinjection of the GABAA receptor antagonist bicuculline, further demonstra
71 ropic glutamate receptor antagonists and the GABAA receptor antagonist bicuculline, granule cells sho
72 a (GABAa) receptor agonist muscimol, and the GABAa receptor antagonist bicuculline, respectively, on
83 irected injections to LS were made using the GABA(A) receptor antagonist, bicuculline (3-30 ng), or t
84 The PVN was disinhibited by microinjecting a GABA(A) receptor antagonist, bicuculline (BIC, 0.1 nmol)
85 by unilateral intracerebral infusions of the GABA(A) receptor antagonist, bicuculline methiodide (BIC
89 cardiovascular effects of microinjecting the GABA(A) receptor antagonist, bicuculline, into the rostr
91 holineacetic acid (SCH50911), and a specific GABA(A) receptor antagonist, bicuculline, were administe
96 ternatively, bilateral RMTg infusions of the GABAA receptor antagonist, bicuculline, suppress robust
101 tructurally dense (1.64 mcbits/ angstrom(3)) GABA(A) receptor antagonist bilobalide, intermediates en
102 was largely resistant to bath application of GABAA receptor antagonists but was sensitive to manipula
103 intra-BLA administration of a low dose of a GABA(A) receptor antagonist, but not an NMDA/AMPA/kainat
108 inic acetylcholine, AMPA, NMDA, glycine, and GABA(A) receptor antagonists does not alter the velocity
110 epilepsy following repeated exposure to the GABAA receptor antagonist, flurothyl, in which mice deve
111 tered GABAergic agents was attenuated by the GABA(A) receptor antagonist gabazine (systemically admin
112 s have low failure rates, are blocked by the GABA(A) receptor antagonist gabazine, and exhibit short-
114 blocked either by a local application of the GABAA receptor antagonist gabazine or by an injection of
116 Gabazine, a gamma-aminobutyric acid type A (GABA(A)) receptor antagonist, has previously been report
119 ChR-mediated inhibition, which is blocked by GABAA receptor antagonists, indicating the engagement of
120 ioid receptor agonist, and of bicuculline, a GABAA receptor antagonist, induced Fos in ipsilateral st
122 has been reported that non-subtype-selective GABAA receptor antagonists injected into the nucleus pon
125 cerebrospinal fluid (aCSF) or bicuculline, a GABAA receptor antagonist, into the PF-LHA in spontaneou
128 th these findings, it has been reported that GABA(A) receptor antagonists microdialyzed into PnO resu
130 er suppressing inhibition with picrotoxin, a GABA(A) receptor antagonist, NMDA receptor-mediated curr
132 -like state following local application of a GABAA receptor antagonist or kainate, glutamate receptor
133 Administration of either bicuculline, a GABAA receptor antagonist, or CGP 35348, a GABAB recepto
137 ents were blocked by both the noncompetitive GABA(A) receptor antagonist picrotoxin and the competiti
138 apparent in the absence and presence of the GABA(A) receptor antagonist picrotoxin and was abolished
140 n be mimicked by single microinfusion of the GABA(A) receptor antagonist picrotoxin into the normal a
141 on, using intracerebral microinfusion of the GABA(A) receptor antagonist picrotoxin or agonist muscim
144 SCs reversed near E(Cl), were blocked by the GABA(A) receptor antagonists picrotoxin or bicuculline m
145 gamma-Frequency firing was eliminated by the GABAA receptor antagonist picrotoxin but small (< 5 mV)
146 or mixed effects on GnRH neuron firing, the GABAA receptor antagonist picrotoxin resulted in a consi
149 greatly enhanced by bath application of the GABAA receptor antagonists picrotoxin or bicuculline.
150 ffects of post-conditioning infusions of the GABA(A) receptor antagonist, picrotoxin, into the IL on
153 or GABAergic neurotransmission with NMDA or GABA(A) receptor antagonists potently reduced the LC-ind
156 ent data suggesting that picrotoxin (PTX), a GABAA receptor antagonist, rescues certain behavioral an
159 used to block retinal waves, induced a tonic GABA(A) receptor antagonist-sensitive current in outside
160 ures similar to the convulsant picrotoxin, a GABA(A) receptor antagonist, so their lack of toxicity i
161 y released substances, were depressed by the GABAA receptor antagonist SR95531 and alpha,beta-meATP.
162 Central administration of bicuculline (a GABA(A) receptor antagonist) stimulated feeding of the a
163 e responsible for the REM sleep induction by GABA(A) receptor antagonists through blocking GABA inhib
166 In the presence of ionotropic glutamate and GABA(A) receptor antagonists, tolbutamide depolarized an
167 enhanced blocking effect of the low-affinity GABA(A) receptor antagonist, TPMPA [1,2,5,6-tetrahydropy
168 PSC amplitude by a low affinity, competitive GABA(A) receptor antagonist was higher in GAD67-lacking