Key result
L-NAME reduces sound-evoked ECoG arousal in rats, supporting NO's role in arousal mechanisms.
Why the study?
The physiological role of nitric oxide in the control of electrocortical arousal mechanisms was investigated.
Does L-NAME reduce the electrocortical arousal response evoked by sound stimulation in rats?
Does L-NAME reduce the electrocortical arousal response evoked by sound stimulation in rats?
Nitric oxide appears to play a physiological role in the control of arousal mechanisms in rats.
Supports NO in rat arousal; leaves open translation to human electrophysiology or therapeutics.
In rats chronically implanted with cannulae into one lateral cerebral ventricle and recording electrodes onto the fronto-parietal cortex, the effects of systemic or intraventricular administration of the nitric oxide (NO) synthesis inhibitor, N omega-nitro-L-arginine methyl ester (L-NAME), on electrocortical (ECoG) arousal response evoked by sound stimulation were studied. In control animals, a single acoustic stimulation (80 dB for 15 s) produced a significant decrease in ECoG total voltage power lasting approximately 25 s. No tolerance developed after repeating the same sound stimulation at 15, 30, 60 min and 24 h intervals. Under these experimental conditions, pretreatment with L-NAME, given systemically (10 mg kg-1, i.p.) or intracerebroventricularly (300 micrograms), significantly reduced the sound-evoked arousal response 1 h and 15 min later, respectively. In conclusion, the present data are in favour of a physiological role of NO in the control of arousal mechanisms.
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Bagetta et al. (1993) studied Electrocortical arousal response. N omega-nitro-L-arginine methyl ester (L-NAME) vs. Control animals was evaluated on Electrocortical (ECoG) arousal response evoked by sound stimulation. Pretreatment with L-NAME significantly reduced the sound-evoked electrocortical arousal response in rats, supporting a physiological role of NO in arousal mechanisms.
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