2014
Oxygen and seizure dynamics: II. Computational modeling
Wei Y, Ullah G, Ingram J, Schiff S. Oxygen and seizure dynamics: II. Computational modeling. Journal Of Neurophysiology 2014, 112: 213-223. PMID: 24671540, PMCID: PMC4064403, DOI: 10.1152/jn.00541.2013.Peer-Reviewed Original ResearchMeSH KeywordsAction PotentialsAnimalsMaleModels, NeurologicalNeuronsOxygenPotassiumRatsRats, Sprague-DawleySeizuresSodiumConceptsSeizure eventsTissue oxygen pressureIntense neuronal firingSeizure patternsInhibitory neuronsNeuronal firingEpileptic seizuresSeizuresElectrophysiological recordingsOxygen metabolismSeizure dynamicsMetabolic energy consumptionEnergy metabolismExcitatoryMicroenvironment dynamicsRecent studies
2012
Modulation of hippocampal rhythms by subthreshold electric fields and network topology
Berzhanskaya J, Chernyy N, Gluckman B, Schiff S, Ascoli G. Modulation of hippocampal rhythms by subthreshold electric fields and network topology. Journal Of Computational Neuroscience 2012, 34: 369-389. PMID: 23053863, PMCID: PMC3549326, DOI: 10.1007/s10827-012-0426-4.Peer-Reviewed Original ResearchConceptsPyramidal cellsGamma rhythmsHippocampal rhythmsSubthreshold electric fieldsSpecific synaptic connectivityExact cellular mechanismsExcitatory contactsSynaptic circuitryBasket cellsLines of resultsArea CA1Inhibitory connectivityInterneuron typesSynaptic connectivityInterneuron classesHippocampal functionNeuron typesNeuronal morphologyTheta/gamma ratioCognitive functionTheta frequencyCellular mechanismsNeural activityElectrophysiological dataNovel role
2009
Tracking and control of neuronal Hodgkin-Huxley dynamics
Ullah G, Schiff S. Tracking and control of neuronal Hodgkin-Huxley dynamics. Physical Review E 2009, 79: 040901. PMID: 19518166, PMCID: PMC2713719, DOI: 10.1103/physreve.79.040901.Peer-Reviewed Original Research
2007
Improved sleep–wake and behavior discrimination using MEMS accelerometers
Sunderam S, Chernyy N, Peixoto N, Mason J, Weinstein S, Schiff S, Gluckman B. Improved sleep–wake and behavior discrimination using MEMS accelerometers. Journal Of Neuroscience Methods 2007, 163: 373-383. PMID: 17481736, PMCID: PMC2279268, DOI: 10.1016/j.jneumeth.2007.03.007.Peer-Reviewed Original Research
2006
Interneuron and Pyramidal Cell Interplay During In Vitro Seizure-Like Events
Ziburkus J, Cressman J, Barreto E, Schiff S. Interneuron and Pyramidal Cell Interplay During In Vitro Seizure-Like Events. Journal Of Neurophysiology 2006, 95: 3948-3954. PMID: 16554499, PMCID: PMC1469233, DOI: 10.1152/jn.01378.2005.Peer-Reviewed Original ResearchMeSH KeywordsAction PotentialsAnimalsBiological ClocksCells, CulturedNerve NetNeural PathwaysPyramidal CellsRatsSeizuresSynaptic TransmissionSeizure Modulation with Applied Electric Fields in Chronically Implanted Animals
Sunderam S, Chernyy N, Mason J, Peixoto N, Weinstein S, Schiff S, Gluckman B. Seizure Modulation with Applied Electric Fields in Chronically Implanted Animals. Annual International Conference Of The IEEE Engineering In Medicine And Biology Society (EMBC) 2006, 2006: 1612-1615. PMID: 17946910, PMCID: PMC3547984, DOI: 10.1109/iembs.2006.259454.Peer-Reviewed Original Research
2005
A Model of the Effects of Applied Electric Fields on Neuronal Synchronization
Park E, Barreto E, Gluckman B, Schiff S, So P. A Model of the Effects of Applied Electric Fields on Neuronal Synchronization. Journal Of Computational Neuroscience 2005, 19: 53-70. PMID: 16133825, PMCID: PMC1752229, DOI: 10.1007/s10827-005-0214-5.Peer-Reviewed Original ResearchControl of Traveling Waves in the Mammalian Cortex
Richardson K, Schiff S, Gluckman B. Control of Traveling Waves in the Mammalian Cortex. Physical Review Letters 2005, 94: 028103. PMID: 15698234, PMCID: PMC1513188, DOI: 10.1103/physrevlett.94.028103.Peer-Reviewed Original Research
2004
Spiral Waves in Disinhibited Mammalian Neocortex
Huang X, Troy W, Yang Q, Ma H, Laing C, Schiff S, Wu J. Spiral Waves in Disinhibited Mammalian Neocortex. Journal Of Neuroscience 2004, 24: 9897-9902. PMID: 15525774, PMCID: PMC4413915, DOI: 10.1523/jneurosci.2705-04.2004.Peer-Reviewed Original Research
2003
Sensitivity of Neurons to Weak Electric Fields
Francis J, Gluckman B, Schiff S. Sensitivity of Neurons to Weak Electric Fields. Journal Of Neuroscience 2003, 23: 7255-7261. PMID: 12917358, PMCID: PMC6740448, DOI: 10.1523/jneurosci.23-19-07255.2003.Peer-Reviewed Original ResearchMeSH KeywordsAction PotentialsAnimalsCells, CulturedElectric StimulationElectricityNerve NetNeuronsPyramidal CellsRatsRats, Sprague-Dawley
2002
Failure of single-unit neuronal activity to differentiate globus pallidus internus and externus in Parkinson disease.
Schiff S, Dunagan B, Worth R. Failure of single-unit neuronal activity to differentiate globus pallidus internus and externus in Parkinson disease. Journal Of Neurosurgery 2002, 97: 119-28. PMID: 12134901, DOI: 10.3171/jns.2002.97.1.0119.Peer-Reviewed Original ResearchConceptsGlobus pallidus internusSingle-unit activityParkinson's diseaseNeuronal activitySingle-unit neuronal activitySingle unit neuronal recordingsFinal electrode placementElectrode placementMean firing frequencyTotal spectral powerPallidal surgeryMicroelectrode recordingsFiring frequencyOperating roomNeuronal recordingsInternusDiseaseExternusSpectral powerRecordingsPallidotomyPatientsSurgeryLesionsActivity
1998
Periodic Orbits: A New Language for Neuronal Dynamics
So P, Francis J, Netoff T, Gluckman B, Schiff S. Periodic Orbits: A New Language for Neuronal Dynamics. Biophysical Journal 1998, 74: 2776-2785. PMID: 9635732, PMCID: PMC1299619, DOI: 10.1016/s0006-3495(98)77985-8.Peer-Reviewed Original Research
1996
Electric field suppression of epileptiform activity in hippocampal slices
Gluckman B, Neel E, Netoff T, Ditto W, Spano M, Schiff S. Electric field suppression of epileptiform activity in hippocampal slices. Journal Of Neurophysiology 1996, 76: 4202-4205. PMID: 8985916, DOI: 10.1152/jn.1996.76.6.4202.Peer-Reviewed Original Research
1994
Controlling chaos in the brain
Schiff S, Jerger K, Duong D, Chang T, Spano M, Ditto W. Controlling chaos in the brain. Nature 1994, 370: 615-620. PMID: 8065447, DOI: 10.1038/370615a0.Peer-Reviewed Original Research
1985
Glutamine can enhance synaptic transmission in hippocampal slices
Schiff S, Szerb J, Somjen G. Glutamine can enhance synaptic transmission in hippocampal slices. Brain Research 1985, 343: 366-369. PMID: 2996699, DOI: 10.1016/0006-8993(85)90758-9.Peer-Reviewed Original Research