2022
Studying the pathophysiology of tic disorders in animal models
Pittenger C. Studying the pathophysiology of tic disorders in animal models. International Review Of Movement Disorders 2022, 4: 39-61. DOI: 10.1016/bs.irmvd.2022.06.001.Peer-Reviewed Original Research
2019
Initial findings of striatum tripartite model in OCD brain samples based on transcriptome analysis
Lisboa B, Oliveira K, Tahira A, Barbosa A, Feltrin A, Gouveia G, Lima L, Feio dos Santos A, Martins D, Puga R, Moretto A, De Bragança Pereira C, Lafer B, Leite R, Ferretti-Rebustini R, Farfel J, Grinberg L, Jacob-Filho W, Miguel E, Hoexter M, Brentani H. Initial findings of striatum tripartite model in OCD brain samples based on transcriptome analysis. Scientific Reports 2019, 9: 3086. PMID: 30816141, PMCID: PMC6395771, DOI: 10.1038/s41598-019-38965-1.Peer-Reviewed Original ResearchConceptsObsessive-compulsive disorderSynaptic transmissionPathophysiology of OCDDifferent striatal subregionsPostmortem brain tissueChemical synaptic transmissionStriatal areasCortico-striatoNeurotransmitter levelsStriatum regionThalamic circuitryStriatal subregionsSubregion specificityPsychiatric disordersPresynaptic processesSynaptic plasticityBrain samplesOCD pathophysiologyBrain tissueCSTC modelControl casesPathophysiologyRare variantsDisordersCellular responsesSU72 TRANSCRIPTOME STUDY IN OBSESSIVE COMPULSIVE DISORDERS
Lisboa B, Tahira A, Sant'Anna A, Oliveira K, Miguel E, Hoexter M, Farfel J, Brentani H. SU72 TRANSCRIPTOME STUDY IN OBSESSIVE COMPULSIVE DISORDERS. European Neuropsychopharmacology 2019, 29: s927. DOI: 10.1016/j.euroneuro.2017.08.261.Peer-Reviewed Original ResearchObsessive-compulsive disorderNucleus accumbensSubgenual cingulate gyrusCortico-striatal circuitryOrbitofrontal cortexAffective circuitryCingulate gyrusCaudate nucleusBrain areasCognitive circuitryBrazilian Aging Brain Study GroupCompulsive disorderEnsheathment of neuronsEnrichment analysisBackground Obsessive-compulsive disorderDrug metabolic processFunctional neuroimaging studiesCortico-striatal loopsDopaminergic synapsesBrain BankThalamic circuitryGene expressionStudy groupNeurological system processPsychiatric disorders
2005
Altered parvalbumin-positive neuron distribution in basal ganglia of individuals with Tourette syndrome
Kalanithi PS, Zheng W, Kataoka Y, DiFiglia M, Grantz H, Saper CB, Schwartz ML, Leckman JF, Vaccarino FM. Altered parvalbumin-positive neuron distribution in basal ganglia of individuals with Tourette syndrome. Proceedings Of The National Academy Of Sciences Of The United States Of America 2005, 102: 13307-13312. PMID: 16131542, PMCID: PMC1201574, DOI: 10.1073/pnas.0502624102.Peer-Reviewed Original ResearchConceptsTourette syndromeNeuron distributionCalcium-binding protein parvalbuminNeuron numberT subjectsLower neuron numberGlobus pallidus pars externaParvalbumin-positive interneuronsTotal neuron numberUnbiased stereological techniquesChildhood neuropsychiatric disordersBasal ganglia tissueGABAergic neuronsGPi neuronsBasal gangliaCortico-striatoGlobus pallidusProtein parvalbuminThalamic circuitryGanglion tissueVocal ticsNormal controlsPutamen volumePars externaImaging studies
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