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1 gic synapses, excite neurons in the thalamic nucleus reticularis, and both excite and inhibit neurons
2 45-60 days later in a limited portion of the nucleus reticularis gigantocellularis (Gi) and Gi pars a
3 ion, electrical stimulation of the medullary nucleus reticularis gigantocellularis (NRGc) evoked larg
4 rals and swellings were also observed in the nucleus reticularis gigantocellularis and in the ventrol
5 numbers of non-5HT neurons, in the medullary nucleus reticularis gigantocellularis and magnocellulari
6 which encompasses the ventral portion of the nucleus reticularis gigantocellularis and the nucleus ma
8 either the nucleus raphe magnus (NRM) or the nucleus reticularis gigantocellularis pars alpha (NGCp a
9 microinjected in the nucleus raphe magnus or nucleus reticularis gigantocellularis pars alpha of rats
10 of CGP 35348 in the nucleus raphe magnus or nucleus reticularis gigantocellularis pars alpha of sali
11 aterals and/or dense axonal swellings in the nucleus reticularis gigantocellularis, nucleus reticular
12 llary nucleus raphe magnus (RM) and adjacent nucleus reticularis magnocellularis (NRMC) project to th
14 n the nucleus reticularis gigantocellularis, nucleus reticularis magnocellularis, raphe magnus, and t
15 cted to raphe magnus and the ventral part of nucleus reticularis magnocellularis; and 2) serotonergic
17 eptor-mediated neurotransmission in thalamic nucleus reticularis (nRT) and ventrobasalis complex (VB)
18 ed from neurons acutely dissociated from the nucleus reticularis of thalamus (nRt) treated and untrea
19 NMDA receptor is enriched in the neurons in nucleus reticularis of the thalamus (nRT), but its role
21 sion and [125I]-alphaBTX binding include the nucleus reticularis of the thalamus, the lateral and med
23 phe pallidus); 6) the ventrolateral medulla (nucleus reticularis parvocellularis and the rostral vent
24 reticulospinal neurons in the contralateral nucleus reticularis PnC and bilaterally in the lateral p
25 CRNs project, among other targets, to the nucleus reticularis pontis caudalis (PnC), a major compo
26 formation (MRF) that in turn project to the nucleus reticularis pontis caudalis (PnC), an obligatory
27 mone (CRH; 0, 10, 20, 40 and 80 ng) into the nucleus reticularis pontis caudalis (PnC), an obligatory
28 area near the ventrolateral lemniscus (VLL), nucleus reticularis pontis caudalis (PnC), and spinal mo
29 de tracer Fluoro-Gold into the ventrolateral nucleus reticularis pontis caudalis labeled neurons in t
30 ry pathway centering on the brainstem (i.e., nucleus reticularis pontis caudalis) and the centromedia
32 lliculus in programming of saccades, and the nucleus reticularis tegmenti pontis in saccade-vergence
33 As near-response neurons exist within the nucleus reticularis tegmenti pontis, which receives inpu
35 se in NPY mRNA and protein expression in the nucleus reticularis thalami (nRt) and hippocampus, but n
36 ep slow waves, both GABAergic neurons of the nucleus reticularis thalami (NRT) and thalamocortical (T
38 low-threshold calcium spikes from neurons of nucleus reticularis thalami (nRT) in brain slices from y
39 were obtained from GABAergic neurones of rat nucleus reticularis thalami (NRT) in vitro to assess pre
41 urrents arising from T-type Ca2+ channels in nucleus reticularis thalami (nRT) play a critical role i
42 al relay cells and inhibitory neurons of the nucleus reticularis thalami (nRt) to fire bursts of acti
46 asal neurons that express Cav3.1, whereas in nucleus reticularis thalami neurons that express Cav3.2
47 erm depression of inhibitory synapses in the nucleus reticularis thalami, a region where Nxph1 is nor