2022
Sensory stimulation improves daily functions in Alzheimer’s disease
Cimenser A, Hempel E, Konisky A, Vaughan B, Megerian J, Malchano Z, Hajos M. Sensory stimulation improves daily functions in Alzheimer’s disease. Alzheimer's & Dementia 2022, 18 DOI: 10.1002/alz.060270.Peer-Reviewed Original ResearchADCS-ADLTreatment groupsFunctional abilityAlzheimer's diseaseSensory stimulationPlacebo groupAlzheimer's Disease Cooperative Study-ActivitiesDaily functional abilitiesAbnormal neuronal activityDaily Living ScalePlacebo group participantsGamma oscillationsGroup participantsSynchronized gamma oscillationsAbnormal neuronal functionHz gamma oscillationsTreatment group participantsClinical trialsDisease progressionPathological markersFunctional declineDifferent functional abilitiesLiving ScaleNeuronal activityDaily function
2017
Prospects for Modeling Abnormal Neuronal Function in Schizophrenia Using Human Induced Pluripotent Stem Cells
Prytkova I, Brennand K. Prospects for Modeling Abnormal Neuronal Function in Schizophrenia Using Human Induced Pluripotent Stem Cells. Frontiers In Cellular Neuroscience 2017, 11: 360. PMID: 29217999, PMCID: PMC5703699, DOI: 10.3389/fncel.2017.00360.Peer-Reviewed Reviews, Practice Guidelines, Standards, and Consensus StatementsInhibitory GABAergic neuronsAbnormal neuronal functionStem cellsPluripotent stem cellsGABAergic neuronsDopaminergic neuronsNetwork dysfunctionSZ pathologyDifficult disorderPatient-derived pluripotent stem cellsGlial culturesAnimal modelsNeuronal functionNetwork pathologyPatient-specific mannerHuman induced pluripotent stem cellsMolecular dysfunctionCo-culture techniqueInduced pluripotent stem cellsDysfunctionHigh rateDifferent cell typesNeuronsPathologyCell types
1993
Chapter 36: Actions of acetylcholine in the cerebral cortex and thalamus and implications for function
McCormick D. Chapter 36: Actions of acetylcholine in the cerebral cortex and thalamus and implications for function. Progress In Brain Research 1993, 98: 303-308. PMID: 8248519, DOI: 10.1016/s0079-6123(08)62412-7.Peer-Reviewed Original ResearchConceptsCholinergic neuronsCerebral cortexNicotinic receptorsForebrain activityAction of acetylcholinePost-synaptic responsesAbnormal neuronal functionNicotinic typeCholinergic pathwaysBasal forebrainCholinergic receptorsMuscarinic receptorsCholinergic systemMammalian CNSPhasic responseModulatory controlNeuronal functionAlzheimer's diseaseDistinct subtypesReceptor activationProlonged inhibitionFiring patternsPharmacological propertiesAcetylcholineProlonged changes
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