Can tDCS accelerate and sustain the cognitive benefits of targeted cognitive training in schizophrenia
Can tDCS accelerate and sustain the cognitive benefits of targeted cognitive training in schizophrenia
批准号:
9886275
负责人:
Ian Spicer Ramsay
金额:
$16.65万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-03-05 至 2024-02-28
关键词:
AftercareAnodesAreaAuditoryAuditory systemAutomobile DrivingBehavior TherapyBehavioralBrainClinicalCognitionCognitiveCognitive deficitsCouplingDevelopmentDiseaseElectroencephalographyFrequenciesFundingGoalsHourIndividual DifferencesInterventionLearningMeasuresMedicineMentorsMentorshipMethodsMissionNeuronal PlasticityOutcomeParticipantPathologicPatientsPhasePopulationPrefrontal CortexPsychiatryPublic HealthPublicationsRandomizedResearchRestSchizophreniaScientistShort-Term MemorySignal TransductionSymptomsSystemTask PerformancesTechniquesTestingTo specifyTrainingTreatment Costauditory processingbasecareercognitive benefitscognitive enhancementcognitive performancecognitive trainingexperiencefollow-upfunctional outcomeshealth goalsimprovedinnovationneuroimagingneuromechanismneuronal excitabilityneuroregulationnovelpersonalized medicineprogramspsychosocialreduce symptomsrelating to nervous systemresponsesevere mental illnessskillstreatment effect
中文摘要
项目总结/文摘
英文摘要
Project Summary/Abstract
Patients suffering from schizophrenia and related disorders experience cognitive disruptions associated with
poor functional outcomes. It is therefore critical to achieve the long-term goal of developing efficacious and
mechanistically informed treatments to improve cognition in this population. Targeted cognitive training (TCT)
has shown promise for improving cognition in patients with schizophrenia, but individual differences in behavioral
and neural target engagement limit the efficiency and sustainability of this treatment. TCT enhances prefrontal
oscillatory gamma that coincides with improved cognition in patients with schizophrenia. Similar increases in
prefrontal gamma and cognitive performance in schizophrenia have been demonstrated using transcranial direct
current stimulation (tDCS). The current study will determine whether cognitive enhancement in schizophrenia
can be achieved more efficiently by combining tDCS that enhances neural oscillatory rhythms with TCT that
harnesses gamma oscillatory plasticity in prefronto-temporal systems. Using an experimental medicine
framework, this study will test the central hypothesis that TCT+tDCS will—via the mechanism of increased
prefrontal oscillatory gamma—accelerate and sustain the behavioral effects of cognitive training over
TCT+Sham. This study will pursue 3 specific aims: 1) Determine whether TCT+tDCS more rapidly improves
cognition compared to TCT+Sham; 2) examine the relationship between change in cognition and change in
prefrontal oscillatory gamma following TCT+tDCS; and 3) determine whether cognitive and functional benefits
following TCT+tDCS are sustained after a 3-month follow-up. An exploratory aim will examine cross-frequency
coupling (CFC) between theta and gamma oscillatory signals and determine whether changes in CFC
corresponds to improved cognition. To carry out these aims, patients with schizophrenia will be randomized to
undergo either 20 hours of TCT+tDCS or TCT+Sham. Participants will be assessed on measures of cognition,
symptoms, and functioning at baseline, after 10 hours of training, after 20 of training, and at a 3-month follow-
up. To measure changes in oscillatory gamma, participants will undergo task/resting EEG at baseline, after 10
hours, and after 20 hours. The approach is innovative as it investigates the combined effects of a behavioral
intervention and neuromodulation, uses an experimental medicine framework to probe neural target
engagement, and relies on novel computational and neural analyses. The proposed research is significant
because it will establish prefrontal gamma as a treatment target in schizophrenia, and lay the groundwork for
personalized treatments that could be deployed in a clinical setting. The outlined proposal will also facilitate the
candidate’s training goals: 1) Administration of tDCS; 2) Administration and analysis of EEG; 3) learning
computational psychiatry methods. Completion of these goals will establish the candidate as an expert on
neuroplasticity-based interventions for serious mental illness, and make them competitive for R01-level funding.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Can tDCS accelerate and sustain the cognitive benefits of targeted cognitive training in schizophrenia
-
批准号:10094079
-
项目类别:
-
资助金额:$16.65万
-
财政年份:2019
-
负责人:Ian Spicer Ramsay
-
依托单位:
Can tDCS accelerate and sustain the cognitive benefits of targeted cognitive training in schizophrenia
-
批准号:10349451
-
项目类别:
-
资助金额:$16.65万
-
财政年份:2019
-
负责人:Ian Spicer Ramsay
-
依托单位:
Neural Impact of Cognitive Remediation for Schizophrenia in a Randomized Trial
-
批准号:8782196
-
项目类别:
-
资助金额:$3.41万
-
财政年份:2014
-
负责人:Ian Spicer Ramsay
-
依托单位:
海外基金