The effects of transcranial direct current stimulation on the neuronal mechanisms of cognitive control in schizophrenia
The effects of transcranial direct current stimulation on the neuronal mechanisms of cognitive control in schizophrenia
批准号:
9394675
负责人:
Jason Smucny
金额:
$5.63万
依托单位国家:
美国
项目类别:
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-07-01 至 2020-06-30
关键词:
AchievementAcuteAnodesAttentionBehaviorBehavioralBilateralBiologicalBrainCaliforniaClinicalClinical DataClinical ResearchCognitiveCommunitiesCuesDataData AnalysesDevelopmentElementsEnvironmentExpectancyFunctional Magnetic Resonance ImagingFutureGoalsGrantHealth PrioritiesImpaired cognitionKnowledgeLearningLettersMaintenanceMeasuresMental HealthMentorsMethodsNational Research Service AwardsNegative FindingNeurobehavioral ManifestationsNeurobiologyNeurocognitiveNeuronsNeurosciencesPatientsPatternPerceptionPerformancePopulationPrefrontal CortexProcessQuality of lifeRecruitment ActivityReflex actionRefractoryReportingResearchResearch PersonnelSchizophreniaSensoryStimulusTestingTrainingUniversitiesVariantWorkWritingbasebrailleclinical effectcognitive controlcognitive functionexperimental studyflexibilityfunctional disabilityimprovedmemory processneural correlateneurobiological mechanismneuroimagingneuronal circuitrynovelpost-doctoral trainingprocessing speedresponseskillssymptom treatmenttheoriestherapeutic developmenttherapy developmenttreatment effect
中文摘要
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英文摘要
Project Summary/Abstract
The purpose of this study is to better understand the neural correlates of cognitive control (CC) deficits in
schizophrenia and determine how these mechanisms can be modulated by transcranial direct current
stimulation (tDCS). CC is a critical neurocognitive process that is required for flexible, directed thought and
action based on goals and intentions. Identifying and developing paradigms to improve CC is therefore a
mental health priority. Current theories of CC postulate that recruitment of the dorsolateral prefrontal cortex
(DLPFC) is essential for this process by maintaining high-level information that it can then use to orchestrate
patterns of activation in other brain networks to support optimal performance. tDCS is a safe, noninvasive
method of modulating regional brain excitability via brief (15-20 m) application of a weak (1-2 mA) current. The
goal of the proposed experiments is to combine tDCS with functional magnetic resonance imaging (fMRI) to
test the hypotheses that 1) acute tDCS over the DLPFC can improve performance during a CC task (the dot
pattern expectancy (DPX) variant of the AX-CPT) in schizophrenia, and 2) acute tDCS over the DLPFC can
increase recruitment of the DLPFC during the DPX. The current study will be the first to use fMRI to examine
the effects of tDCS on the neuronal mechanisms of CC in schizophrenia, and has potentially important
implications for therapeutic development for this treatment refractory yet disabling aspect of the illness.
Through completion of this research, in combination with additional activities including coursework,
participation in an active clinical research group, and the University of California, Davis neuroscience
community, the NRSA will enable Dr. Smucny to achieve the following goals of his postdoctoral training: 1)
Research and Expertise in tDCS, 2) Continued Training in Neuroimaging Methods, 3) Additional Clinical
Research and Data Analysis Training, and 4) Developing Skills Necessary to Become an Independent
Researcher (Including Writing Grants, Mentoring, Networking, and Presenting). Achievement of these goals is
an important step towards Dr. Smucny's long-term goal of becoming a productive independent researcher in
the mental health field with a focus on using neuroimaging to better understand the neurobiology of and
development novel treatments for schizophrenia.
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海外基金