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The VETSA Longitudinal MRI Twin Study of Aging

The VETSA Longitudinal MRI Twin Study of Aging
VETSA 纵向 MRI 双胞胎衰老研究
批准号:
7932744
负责人:
WILLIAM S. KREMEN
金额:
$146.7万
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-09-15 至 2014-08-31
关键词:
AddressAffectAgeAgingAlzheimer&aposs DiseaseAmericanAnisotropyApolipoprotein EBackBlood VesselsBrainCerebrovascular CirculationCharacteristicsCognitionCognitiveCorpus striatum structureCraniocerebral TraumaDataData CollectionData SetDatabasesDementiaDevelopmentDiabetes MellitusDiffusion Magnetic Resonance ImagingEarly DiagnosisElderlyEnrollmentEnvironmental Risk FactorExerciseFamilyFollow-Up StudiesFunctional Magnetic Resonance ImagingFundingFutureGeneticGenetic TechniquesGenotypeGoalsHealthHeritabilityHippocampal FormationHumanHypertensionImageImage AnalysisImpaired cognitionIndividual DifferencesInterceptInterventionKnowledgeLinkLiteratureLongevityLongitudinal StudiesMRI ScansMagnetic Resonance ImagingMeasuresMedialMetabolic syndromeMethodsModelingMolecular GeneticsMultivariate AnalysisMydriasisNeurosecretory SystemsParentsPathway interactionsPatient Self-ReportPatternPerformancePerfusionPersonsPhasePhenotypePositioning AttributePrefrontal CortexPreventionProcessProgress ReportsPsyche structurePsychophysiologyPublic HealthPublishingPulmonary function testsQuality of lifeRecording of previous eventsRegional PerfusionRelative (related person)ResourcesRestRiskRisk FactorsSamplingScanningSecondary PreventionSignal TransductionSpin LabelsStructureSubgroupSystemTestingThalamic structureThickTimeTwin Multiple BirthTwin StudiesUnconscious StateVariantVietnamWeightacronymsage relatedagedaging brainaging populationbaseblood oxygen level dependentbrain morphologycardiovascular risk factorcaregivingcognitive changecognitive reservecostdesigndisabilityexecutive functionfitnessfollow-upgenetic analysisgray matterhigh riskimaging modalityindexinglongitudinal designmiddle agemild neurocognitive impairmentneuroimagingnon-geneticnormal agingnovelparent projectpsychosocialpublic health relevancerelating to nervous systemtrendwhite matterwhite matter change

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中文摘要
翻译
描述(由申请人提供):目前基于神经成像研究的关于人脑衰老的大多数已知信息仅从横截面数据推断。尽管有几项研究表明中年是大脑衰老的一个关键转折点,但纵向成像研究很少,对中年的关注也相对较少。在纵向设计中,对遗传和环境对大脑衰老的影响程度所知甚少。拟议的研究将填补这些关键的知识差距与第一个5年的随访VETSA纵向MRI双胞胎研究老化(VMRI)。(VETSA是Vietnam Era Twin Study of Aging的缩写。我们招募了607对双胞胎,并在基线VMRI中获得了515(85%)可分析的扫描,包括全面的结构和扩散张量成像。我们建议在第一次随访研究中替换一些受试者并获得600次扫描。双胞胎在基线评估时为51-60岁,在拟议的VMRI随访中为56-65岁。鉴于样本量大,年龄范围窄,我们将有最大的权力来检查在这个关键的过渡时期内的个人变化和变化的个体差异。具体目标是:1)在我们独特的规范数据库中添加纵向成像组件; 2)确定遗传和环境对大脑结构随时间变化的影响; 3)检查APOE基因型与大脑结构随时间变化的关系; 4)阐明与大脑结构随时间变化相关的生物医学和其他风险因素,并检查其共同的遗传和环境基础; 5)提供白色物质随年龄变化的详细表征;以及6)通过研究区域灌注(经由动脉自旋标记)和默认网络(经由功能性MRI)来检查脑功能和区域脑活动的整合。潜在的风险/保护因素可在父项目中收集的广泛的认知、生物医学和心理社会表型中获得。在保持与2因素模型,我们提出,正常老化主要影响额-纹状体系统,而内侧颞系统更强烈地影响阿尔茨海默氏病。白色物质的完整性被假设为功能连接的基础,但只存在横截面证据。我们假设基线白色物质完整性和白色物质完整性随时间的变化将预测默认网络的主要组件之间的活动相关性的强度。根据我们目前的研究结果,我们还预测APOE-54携带者的前额叶皮层变薄程度更大。拟议的项目是在一个独特的位置,以确定成功的或病理性脑老化的早期预测,并描绘其相对潜在的遗传和环境影响。相关性:该项目为了解中年(一个未充分研究的时期)开始的大脑衰老过程创造了宝贵的资源。此外,在中年而不是晚年确定预测因素的可能性,对干预或预防具有重要的公共卫生意义。公共卫生相关性:这个项目创造了一个宝贵的资源,用于了解中年(一个未充分研究的时期)开始的大脑衰老过程。此外,确定中年而不是晚年大脑老化预测因素的可能性,在干预或预防方面具有重要的公共卫生意义。
英文摘要
DESCRIPTION (provided by applicant): Most of what is currently known about human brain aging based on neuroimaging studies is only inferred from cross-sectional data. There have been very few longitudinal imaging studies and relatively little focus on middle age, despite the fact that several studies suggest that midlife is a key inflection point for brain aging. Even less is known about the extent of genetic and environmental influences on brain aging within a longitudinal design. The proposed study will fill these critical knowledge gaps with the first 5-year follow-up of The VETSA Longitudinal MRI Twin Study of Aging (VMRI). (VETSA is an acronym for Vietnam Era Twin Study of Aging.) We enrolled 607 twins and obtained 515 (85 percent) analyzable scans in the baseline VMRI with comprehensive structural and diffusion tensor imaging. We propose to replace some subjects and acquire 600 scans in this first follow-up study. Twins were 51-60 years old at the baseline assessment and will be 56-65 in the proposed VMRI follow-up. Given the large sample and narrow age range, we will have maximal power to examine within-person change and individual differences in change during this key transition period. Specific aims are to: 1) add a longitudinal imaging component to our unique normative database; 2) determine genetic and environmental influences on brain structure changes over time; 3) examine the relationship of APOE genotype to changes in brain structure over time; 4) elucidate biomedical and other risk factors related to changes in brain structure over time, and examine their shared genetic and environmental underpinnings; 5) provide detailed characterization of white matter changes with age; and 6) examine brain function and integration of regional brain activity by studying regional perfusion (via arterial spin labeling) and the default network (via functional MRI). Potential risk/protective factors are available in the extensive cognitive, biomedical, and psychosocial phenotypes collected in the parent project. In keeping with a 2-factor model, we propose that normal aging primarily affects frontal-striatal systems whereas the medial temporal system is more strongly affected in Alzheimer's disease. White matter integrity is hypothesized to underlie functional connectivity, but there exists only cross-sectional evidence. We hypothesize that baseline white matter integrity and change in white matter integrity over time will predict the strength of activity correlations between major components of the default network. Based on our current findings, we also predict greater cortical thinning in prefrontal regions in APOE-54 carrier. The proposed project is in a unique position to identify early predictors of successful or pathological brain aging and delineate their relative underlying genetic and environmental influences. Relevance: This project creates an invaluable resource for understanding the course of brain aging beginning in midlife (an understudied period). Moreover, the possibility of identifying predictors in midlife, rather than in later life, has important public health implications with regard to intervention or prevention. PUBLIC HEALTH RELEVANCE: PROJECT NARRATIVE This project creates an invaluable resource for understanding the course of brain aging beginning in midlife (an understudied period). Moreover, the possibility of identifying predictors of brain aging in midlife, rather than in later life, has important public health implications with regard to intervention or prevention.
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