Auditory Cortex Structure and Function in Schizophrenia
Auditory Cortex Structure and Function in Schizophrenia
批准号:
8073962
负责人:
James Christopher EDGAR
金额:
$16.82万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-06-18 至 2014-02-28
关键词:
AccountingAgreementAreaAttentionAuditoryAuditory Perceptual DisordersAuditory areaAuditory systemBehavioralBeliefBiological MarkersBiological Neural NetworksBrainBrain regionClinicalCognitionCognitiveComplementDataEarElectroencephalographyFoundationsFrequenciesFunctional disorderGoalsHandHealthImpaired cognitionIndividualInterventionKnowledgeLeftMagnetoencephalographyMeasuresMethodsModelingMolecular and Cellular BiologyNatureNervous system structureOutpatientsPathway interactionsPatientsPerformancePharmaceutical PreparationsPhaseProcessReportingResearchResearch DesignResearch TrainingRunningSchizophreniaSourceStimulusStructureStudy SectionSuggestionSumSuperior temporal gyrusSymptomsTechniquesTestingTimeTrainingTreatment EfficacyWorkatypical antipsychoticauditory stimulusbaseclinically significantcomputerized data processingdeviantfunctional groupimprovednovelrelating to nervous systemresponsesensor
中文摘要
描述(由申请人提供):听觉信息处理能力的缺陷被认为是精神分裂症(Sz)的核心异常之一。尽管这一主题很重要,但我们对正常或紊乱的听觉处理机制知之甚少,也不知道听觉缺陷的临床意义。研究越来越多地将重点放在与听觉过程相关的时频大脑活动上,因为人们假设单次试验的幅度和相位测量更能反映神经过程。正如K08提案中详细描述的那样,我最近的颞上回(STG)时频发现建立在这一研究领域的发现基础上,并极大地扩展了这一领域的研究结果,目前的结果表明,在理解和治疗Sz方面可能取得进展的几个明确的研究路线。对于K08研究,使用为K08项目开发的新任务,将在50名对照组和50名患者中获得整个大脑听觉活动的功能测量(脑电图学和脑磁图学)。有三个实质性的研究目标:(1)通过检查听觉网络中的多个节点并通过多次评估每个过程(编码与门控、幅度与锁相)来确定Sz中听觉异常的性质,(2)通过改变注意力AI/任务集要求来确定Sz患者的异常听觉过程是否可以正常化,以及(3)确定所观察到的异常的临床意义。编码锁相缺陷被假设,并假设这种异常与认知问题和增加的负面症状有关。K08培训是对K08研究的补充。K08的主要培训目标包括:(1)研究几种新的分布式源定位方法和先进的时频信号处理技术,以检查整个大脑的听觉活动,以及(2)有关神经系统的细胞和分子生物学以及作为紧急振荡活动基础的神经过程的课堂工作。这些方法和数据将形成R01的基础,该R01试图使Sz的听觉功能障碍正常化。
公共卫生相关性:许多精神分裂症患者在处理听觉刺激时显示出异常的大脑活动。我们对正常或紊乱的听觉处理的机制知之甚少。这项拟议的项目使用非侵入性技术来增加我们对对照组和精神分裂症患者听觉区域功能的了解。并对这些异常的临床意义进行了分析。
英文摘要
DESCRIPTION (provided by applicant): A deficit in the capacity to process auditory information has been proposed as one of the core abnormalities in schizophrenia (Sz). Despite the importance of the subject, we know little about the mechanisms underlying normal or disordered auditory processing, or about the clinical significance of auditory deficits. Research focuses increasingly on the time-frequency brain activity associated with auditory processes, as it's hypothesized that single-trial amplitude and phase measures more closely reflect neural processes. As detailed throughout this K08 proposal, my recent superior temporal gyrus (STG) timefrequency findings build upon and greatly extend findings in this area of research, and present results indicate several clear lines of research where advances in the understanding and treatment of Sz are likely. For the K08 study, using novel tasks developed for this K08 project, functional measures (electroencephalography and magnetoencephalography) of auditory activity throughout the brain will be obtained with 50 controls and 50 patients. There are 3 substantive research goals: (1) determine the nature of auditory abnormalities in Sz by examining multiple nodes in the auditory network and by multiply assessing each processes (encoding vs. gating, amplitude vs. phase-locking), (2) determine whether the abnormal auditory processes can be normalized in patients with Sz by varying attention aI/task-set requirements, and (3) determine the clinical significance of the observed abnormalities. An encoding phase-locking deficit is hypothesized, and it is hypothesized that this abnormality is associated with cognitive problems and increased negative symptoms. K08 training complements K08 research. Primary K08 training goals include: (1) study of several novel distributed source localization methods and advanced time-frequency signal processing techniques in order to examine auditory activity throughout the brain, and (2) classroom work on relevant cellular and molecular biology of the nervous system and the neural processes that underlie emergent oscillatory activity. These methods and data will form the foundation of a R01 that seeks to normalize auditory dysfunction in Sz.
PUBLIC HEALTH RELEVANCE: Many individuals with schizophrenia show abnormal brain activity when processing auditory stimuli. We know little about the mechanisms underlying normal or disordered auditory processing. The proposed project uses non-invasive techniques to increase our knowledge of the function of auditory areas in controls and in individuals with schizophrenia. The clinical significance of these abnormalities is also examined.
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海外基金