2010
Dynamic Time Course of Typical Childhood Absence Seizures: EEG, Behavior, and Functional Magnetic Resonance Imaging
Bai X, Vestal M, Berman R, Negishi M, Spann M, Vega C, Desalvo M, Novotny EJ, Constable RT, Blumenfeld H. Dynamic Time Course of Typical Childhood Absence Seizures: EEG, Behavior, and Functional Magnetic Resonance Imaging. Journal Of Neuroscience 2010, 30: 5884-5893. PMID: 20427649, PMCID: PMC2946206, DOI: 10.1523/jneurosci.5101-09.2010.Peer-Reviewed Original ResearchMeSH KeywordsAdolescentBrainBrain MappingCerebrovascular CirculationChildElectroencephalographyEpilepsy, AbsenceFemaleHumansLinear ModelsMagnetic Resonance ImagingMaleModels, NeurologicalMotor ActivityNeuropsychological TestsPsychomotor PerformanceSeizuresSignal Processing, Computer-AssistedTime FactorsConceptsTypical childhood absence seizuresChildhood absence seizuresAbsence seizuresFMRI decreasesSeizure onsetHz spike-wave dischargesMagnetic resonance imaging changesFunctional magnetic resonance imaging (fMRI) changesTime courseHz generalized spikeSpike-wave dischargesFunctional magnetic resonance imagingMagnetic resonance imagingRepetitive tapping taskLateral parietal cortexLateral frontal cortexImpaired consciousnessPediatric patientsImaging changesEEG time-frequency analysisSeizure endMean durationSeizure initiationGeneralized spikeFMRI changes
1990
Facilitatory and inhibitory transmitters modulate calcium influx during action potentials in Aplysia sensory neurons
Blumenfeld H, Spiral M, Kandel E, Siegelbaum S. Facilitatory and inhibitory transmitters modulate calcium influx during action potentials in Aplysia sensory neurons. Neuron 1990, 5: 487-499. PMID: 1976321, DOI: 10.1016/0896-6273(90)90088-w.Peer-Reviewed Original ResearchConceptsAplysia sensory neuronsAction potentialsSensory neuronsIndicator dye fura-2Sensory neuron terminalsDye fura-2Modulation of Ca2Presynaptic inhibitionInhibitory transmitterNeuron terminalsPresynaptic facilitationCalcium influxFura-2Intracellular injectionIntracellular Ca2Transient riseInternal Ca2Time courseNeuronsFMRFamideCa2InfluxSerotonin