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Valeri A Frolov

Publications and source records attributed to Valeri A Frolov.

2 recordsLinked to original sources

Very slow potentials in the lateral geniculate complex and primary visual cortex during different illumination changes in freely moving rats.

Previous literature has shown different forms of very slow oscillatory phenomena (0-0.5 Hz) in the structures of brain visual system. It was demonstrated in aforementioned publications that this infraslow activity might be sensitive to the level of environmental illumination. This study was performed to test the hypothesis that extracellular very slow brain potential (VSBP) oscillations or fluctuations in lateral geniculate complex (LGC) and primary visual cortex (PVC) are responding specifically and concurrently to different illumination changes. Experiments were conducted on five albino rats with chronically implanted stereotaxic electrodes in LGC and PVC brain sites. Our results support the aforementioned suggestion and revealed significant and similar patterns of VSBP modification within a frequency domain of seconds (0.1-0.25 Hz) in both the LGC and PVC in response to darkness, illumination and photostimulation. It is also documented here that significant and similar changes of multisecond activity (0.02-0.04 Hz) occur in both investigated brain sites in response to photostimulation only. Based on these findings, we propose that a possible role for VSBP oscillations in the LGC and PVC should be strongly considered in the CNS mechanisms of visual information processing.

Animals↗

Very slow potential oscillations in locus coeruleus and dorsal raphe nucleus under different illumination in freely moving rats.

Recent findings have revealed very slow (<0.5 Hz) oscillatory phenomena in the structures of the brain visual system. It has been proposed that very slow brain potentials in an extremely slow domain, less than 0.1 Hz, recorded from the lateral geniculate complex and primary visual cortex are associated with periodic influences originating from the locus coeruleus and dorsal raphe nucleus. The present study was performed to test the hypothesis that extremely slow brain potential oscillatory patterns in the locus coeruleus and dorsal raphe nucleus during several types of visual stimulation--light exposure, darkness, and photostimulation--are similar to those in the primary visual cortex and lateral geniculate complex under the same conditions of illumination. The results support this hypothesis. Specifically, spectral patterns of multisecond oscillations in the range of 0.02-0.04 Hz and fluctuations in the domain of minutes (below 0.002 Hz) were present in both the locus coeruleus and dorsal raphe nucleus and were similar to those found in the primary visual cortex and lateral geniculate complex. Additionally, we detected significant increases in the power spectra of multisecond oscillations in both nuclei in response to photostimulation (P<0.05). Our tentative conclusion is that extremely slow potentials in the locus coeruleus and dorsal raphe nucleus contribute to the regulation of extremely slow activity in the brain visual system.

Action Potentials↗