Early brain development after prenatal "Ice" exposure: A Longitudinal MR study
Early brain development after prenatal "Ice" exposure: A Longitudinal MR study
批准号:
7487084
负责人:
LINDA CHANG
金额:
$53.35万
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-09-30 至 2010-08-31
关键词:
3 year oldAdultAffectAgeAge-YearsAnimal ModelAttentionAutopsyBasal GangliaBehaviorBiologicalBirthBrainBrain regionChemicalsChildCholineClinicalCognitiveCorpus striatum structureCoupledCreatineCross-Sectional StudiesDataData SetDevelopmentDiffusionDiffusion Magnetic Resonance ImagingEarly InterventionEnrollmentEnvironmentEthnic OriginEvaluationExposure toFundingFutureGlobus PallidusGlutamatesGlutamineHippocampus (Brain)HormonesHumanHydrocortisoneIceInfantInfant DevelopmentInterventionLeadLearningLife StyleMagnetic Resonance ImagingMagnetic Resonance SpectroscopyMarijuanaMeasurementMediatingMemoryMetabolismMethamphetamineMoodsMothersN-acetylaspartateNeurogliaNeuronsNeuropsychological TestsNicotineNumbersPerformancePharmaceutical PreparationsProtonsRecruitment ActivityRelative (related person)Research PersonnelResolutionSalivaryScanningSchoolsScoreScreening procedureSedation procedureSocioeconomic StatusStressStructureSubstance AddictionSystemTechniquesTestingTimeWomanage relatedbasebrain volumecognitive functioncomparison groupdensitydesigndigitaldrug of abuseearly childhoodexperiencefetal methamphetamine exposurefetal tobacco exposurefollow-upimage processingin uteroin vivomaternal drug usemethamphetamine exposuremorphometrymyoinositolneurobehavioralneurochemistryneuroimagingneuropsychologicalneurotoxicneurotoxicitynovelpre-clinicalprefrontal lobeprenatalprogramspsychosocialputamenresponsesexwhite matter
中文摘要
描述(由申请人提供):
此应用程序是对RFA DA05-007的响应。临床和临床前观察表明,产前接触甲基苯丙胺可能会导致大脑结构和神经化学的异常。人们对这些大脑变化(结构和化学变化)与认知发展的关系知之甚少。我们对产前接触冰毒的儿童进行的初步横断面研究提供了强有力的证据,表明这些儿童在质子磁共振波谱(1HMRS)上有较小的皮质下大脑结构和脑代谢物异常,并在神经心理测试中表现下降。我们的初步数据还表明,这些儿童在某些皮质下结构(壳核、苍白球和海马体)中没有表现出与年龄相关的适当增加。
高分辨率MRI结合新颖的图像处理技术,可以精确量化大脑结构的体积,而1H MRS可以可靠和非侵入性地量化反映神经元密度(N-乙酰天冬氨酸或NAA)和选定大脑区域的其他细胞标记物(胆碱化合物、总肌酸、肌醇、谷氨酸和谷氨酰胺)的神经化学物质。
我们的主要具体目标是:1)评估子宫内接触冰毒的幼儿(3岁)的脑结构(MRI)和脑代谢产物浓度(1H MRS)的变化,并纵向和每年跟踪这些变化,直到7岁。2)在同一时间段(3-7岁)每年评估这些儿童的神经心理表现。3)评价胎儿期接触冰毒儿童脑部结构和化学异常(MRI和1HMRS)与认知发育的关系。
我们将对120名儿童(60名有产前冰毒暴露的儿童和60名没有产前接触冰毒的儿童)进行为期5年的跟踪调查,以确定儿童早期发育期间大脑代谢物水平、形态测量和神经心理表现的时间变化。这些儿童中的大多数将被共同登记,并自出生以来一直在NIDA资助的婴儿发展、环境和生活方式(“理想”)研究中进行跟踪,该研究评估婴儿的神经行为发育。将进行详细的母亲药物使用、心理社会和情绪评估,并将其与这些儿童的生物大脑变化相关联。
英文摘要
DESCRIPTION (provided by applicant):
This application is in response to RFA DA05-007. Clinical and preclinical observations suggest that prenatal methamphetamine (METH) exposure may lead to abnormal brain structures and neurochemistry. Little is known about how these brain changes (structural and chemical) relate to cognitive development. Our preliminary cross-sectional studies in children exposed to METH prenatally provide strong evidence that these children have smaller subcortical brain structures and brain metabolite abnormalities on proton MR spectroscopy (1H MRS), along with decreased performance on neuropsychological tests. Our preliminary data also suggest that these children do not show appropriate age-related increases in some subcortical structures (putamen, globus pallidus, and hippocampi).
High resolution MRI, coupled with novel image processing technques, can precisely quantify volumes of brain structures while 1H MRS can reliably and non-invasively quantify neurochemicals that reflect neuronal density (N-acetyl aspartate or NAA) and other cellular markers (choline-compounds, total creatine, myoinositol, glutamate plus glutamine) in selected brain regions.
Our primary Specific Aims are: 1) To assess changes in brain structure (on MRI) and brain metabolite concentrations (on 1H MRS) in young children (age 3 years) who were exposed to METH in utero, and to follow these changes longitudinally and annually until age 7 years. 2) To evaluate neuropsychological performance in these children on a yearly basis over the same time period (ages 3-7 years). 3) To evaluate how structural and chemical brain abnormalities (on MRI and 1H MRS) are related to cognitive development in children exposed to METH prenatally.
We will follow 120 children (60 with and 60 without prenatal METH exposure) over the course of 5 years, to determine temporal changes in brain metabolite levels, morphometry and neuropsychological performance during early childhood development. Most of these children will be co-enrolled and have been followed since birth in the NIDA-funded Infant Development, Environment and Lifestyle ("IDEAL") study, which assesses infant neurobehavioral development. Detailed maternal drug use, psychosocial and mood evaluations will be performed and correlated with biological brain changes in these children.
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