Literature DB >> 20225075

Methods for predicting cortical UP and DOWN states from the phase of deep layer local field potentials.

Aman B Saleem1, Paul Chadderton2,3, John Apergis-Schoute4, Kenneth D Harris4,3, Simon R Schultz4.   

Abstract

During anesthesia, slow-wave sleep and quiet wakefulness, neuronal membrane potentials collectively switch between de- and hyperpolarized levels, the cortical UP and DOWN states. Previous studies have shown that these cortical UP/DOWN states affect the excitability of individual neurons in response to sensory stimuli, indicating that a significant amount of the trial-to-trial variability in neuronal responses can be attributed to ongoing fluctuations in network activity. However, as intracellular recordings are frequently not available, it is important to be able to estimate their occurrence purely from extracellular data. Here, we combine in vivo whole cell recordings from single neurons with multi-site extracellular microelectrode recordings, to quantify the performance of various approaches to predicting UP/DOWN states from the deep-layer local field potential (LFP). We find that UP/DOWN states in deep cortical layers of rat primary auditory cortex (A1) are predictable from the phase of LFP at low frequencies (< 4 Hz), and that the likelihood of a given state varies sinusoidally with the phase of LFP at these frequencies. We introduce a novel method of detecting cortical state by combining information concerning the phase of the LFP and ongoing multi-unit activity.

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Year:  2010        PMID: 20225075      PMCID: PMC3094772          DOI: 10.1007/s10827-010-0228-5

Source DB:  PubMed          Journal:  J Comput Neurosci        ISSN: 0929-5313            Impact factor:   1.621


  52 in total

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8.  Cellular basis of EEG slow rhythms: a study of dynamic corticothalamic relationships.

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9.  Spontaneous firing patterns of identified spiny neurons in the rat neostriatum.

Authors:  C J Wilson; P M Groves
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Review 10.  Are corticothalamic 'up' states fragments of wakefulness?

Authors:  Alain Destexhe; Stuart W Hughes; Michelle Rudolph; Vincenzo Crunelli
Journal:  Trends Neurosci       Date:  2007-05-03       Impact factor: 13.837

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  24 in total

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Review 2.  Spatiotemporal scales and links between electrical neuroimaging modalities.

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4.  An inhibitory gate for state transition in cortex.

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5.  Populations of striatal medium spiny neurons encode vibrotactile frequency in rats: modulation by slow wave oscillations.

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6.  Up states are rare in awake auditory cortex.

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7.  Sleep replay meets brain-machine interface.

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Review 8.  Sensory-evoked synaptic integration in cerebellar and cerebral cortical neurons.

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9.  Spike-Based Functional Connectivity in Cerebral Cortex and Hippocampus: Loss of Global Connectivity Is Coupled to Preservation of Local Connectivity During Non-REM Sleep.

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10.  Large-scale recording of thalamocortical circuits: in vivo electrophysiology with the two-dimensional electronic depth control silicon probe.

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Journal:  J Neurophysiol       Date:  2016-08-17       Impact factor: 2.714

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