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1 4 Hz paroxysmal oscillations back to 6-10 Hz spindle waves.
2 ABAB receptors, as well as the activation of spindle waves.
3                                      Central spindle wave amplitude declined in a sigmoidal pattern w
4  neurons to participate in the generation of spindle waves and other network oscillations.
5 ns of synchronized network activity, such as spindle waves and spike-and-wave seizures.
6 RH resulted in a transient cessation of both spindle waves and the epileptiform slow oscillation indu
7                                              Spindle waves are generated largely through a cyclical i
8     We recorded spontaneous 400-1000 ms long spindle waves at 10-16 Hz in single axons passing betwee
9 to be involved in slow oscillatory activity (spindle waves) during slow-wave sleep.
10                                We found that spindle wave frequency increased with remarkable lineari
11 G dataset to evaluate maturational trends in spindle wave frequency, density, amplitude, and duration
12 te nucleus resulted in an abolition of local spindle wave generation in thalamocortical neurons.
13 phrine (NE) and serotonin (5-HT) may abolish spindle wave generation through an enhancement of the hy
14 o waking is associated with the abolition of spindle waves in thalamocortical neurons and the GABAerg
15 ecordings, we uncovered local appearances of spindle waves in the barrel cortex during REM concomitan
16 mine to the PGN could halt the generation of spindle waves, indicating that increased activity in the
17 gs from PGN neurons during the generation of spindle waves revealed barrages of EPSPs and IPSPs.
18 at NE and 5-HT may abolish the generation of spindle waves through the modulation of Ih in thalamocor
19                             The abolition of spindle waves was reversed by the local application of t
20 lamic burst, 6-10 Hz oscillations resembling spindle waves were generated.