Intracellular Correlates of Fast (>200 Hz) Electrical Oscillations in Rat Somatosensory Cortex
- 1 September 2000
- journal article
- research article
- Published by American Physiological Society in Journal of Neurophysiology
- Vol. 84 (3) , 1505-1518
- https://doi.org/10.1152/jn.2000.84.3.1505
Abstract
Oscillatory activity in excess of several hundred hertz has been observed in somatosensory evoked potentials (SEP) recorded in both humans and animals and is attracting increasing interest regarding its role in brain function. Currently, however, little is known about the cellular events underlying these oscillations. The present study employed simultaneous in-vivo intracellular and epipial field-potential recording to investigate the cellular correlates of fast oscillations in rat somatosensory cortex evoked by vibrissa stimulation. Two distinct types of fast oscillations were observed, here termed “fast oscillations” (FO) (200–400 Hz) and “very fast oscillations” (VFO) (400–600 Hz). FO coincided with the earliest slow-wave components of the SEP whereas VFO typically were later and of smaller amplitude. Regular spiking (RS) cells exhibited vibrissa-evoked responses associated with one or both types of fast oscillations and consisted of combinations of spike and/or subthreshold events that, when superimposed across trials, clustered at latencies separated by successive cycles of FO or VFO activity, or a combination of both. Fast spiking (FS) cells responded to vibrissae stimulation with bursts of action potentials that closely approximated the periodicity of the surface VFO. No cells were encountered that produced action potential bursts related to FO activity in an analogous fashion. We propose that fast oscillations define preferred latencies for action potential generation in cortical RS cells, with VFO generated by inhibitory interneurons and FO reflecting both sequential and recurrent activity of stations in the cortical lamina.Keywords
This publication has 58 references indexed in Scilit:
- Influence of low and high frequency inputs on spike timing in visual cortical neuronsCerebral Cortex, 1997
- Reliability of Spike Timing in Neocortical NeuronsScience, 1995
- When inhibition not excitation synchronizes neural firingJournal of Computational Neuroscience, 1994
- High-frequency network oscillation in the hippocampusScience, 1992
- Intrinsic firing patterns of diverse neocortical neuronsTrends in Neurosciences, 1990
- Membrane potential changes in rat SmI cortical neurons evoked by controlled stimulation of mystacial vibrissaeBrain Research, 1988
- Synaptic organization of GABAergic neurons in the mouse SmI cortexJournal of Comparative Neurology, 1987
- Properties of the Evoked Potential Generators: Current Source-Density Analysis of Visually Evoked Potentials in the Cat CortexInternational Journal of Neuroscience, 1987
- A comparative analysis of short-latency somatosensory evoked potentials in man, monkey, cat, and ratExperimental Neurology, 1981
- Development from primary to augmenting responses in the somatosensory systemBrain Research, 1981