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Neurobiology of Childhood Obesity: An MRI study

Neurobiology of Childhood Obesity: An MRI study
儿童肥胖的神经生物学:一项 MRI 研究
批准号:
8051033
负责人:
RONALD L COWAN
金额:
$0.74万
依托单位:
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:
2010-05-01 至 2010-09-30

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中文摘要
翻译
描述(由申请人提供):儿童肥胖是一个严重的公共卫生问题,并且正在迅速增加。使用成瘾模型来检查儿童肥胖对食物线索的大脑激活反应,我们预测线索诱导的大脑激活差异在儿童暴饮暴食行为和试图限制食物摄入期间的复发中起着关键作用。我们建议使用功能磁共振成像来检查肥胖儿童对食物线索的反应,并将其与正常体重儿童的反应进行比较。没有发表的神经影像学研究结果显示,其他方面健康的肥胖儿童也有同样的发现。我们实验室在肥胖和正常体重儿童中进行的一项初步研究中,对功能性磁共振成像(fMRI)数据的初步分析表明,与正常体重儿童相比,肥胖儿童对大脑关键区域的食物线索的反应更活跃,包括岛区、海马体回区和眶额皮质。我们假设,与正常体重的儿童相比,超重儿童对食物线索的反应不同,通过fMRI测量,包括在禁食状态下更大的大脑区域激活和对喂食的迟钝反应。我们的具体目标是确定:(1)当食物提示与非食物提示相比时,肥胖儿童与正常体重儿童的区域脑激活模式是否不同?(2)空腹与进食状态是否会改变肥胖儿童对食物线索的反应?我们将使用3.0 Tesla的fMRI对20名8-12岁的肥胖儿童和20名正常体重的健康儿童进行探索性研究,以检查与肥胖相关的区域大脑活动的差异。受试者将在禁食4小时后进食标准膳食后进行研究。将正常体重和肥胖儿童在禁食和喂食条件下对视觉上显示的食物图像的大脑反应与对非食物物品的反应进行对比。这项研究有望阐明肥胖儿童对食物线索反应的神经基础,并为成瘾方法与暴饮暴食行为的相关性提供见解。这些知识对于制定预防和治疗儿童肥胖的循证方法至关重要。肥胖是发病率和死亡率的一个主要且日益重要的原因,接触食物的视觉图像可能在很大程度上导致暴饮暴食和肥胖。这项大脑研究将提高我们对食物线索加工过程的理解,并有助于行为、社会心理和环境干预的发展,促进健康的选择和行为。
英文摘要
DESCRIPTION (provided by applicant): Childhood obesity is a serious public health problem that is rapidly increasing. Using an addiction model to examine brain activation in response to food cues in childhood obesity, we predict that cue-induced brain activation differences play a critical role in childhood over-eating behavior and relapse during attempts to limit food intake. We propose to use fMRI to examine the response of obese children to food cues as compared to the response of normal weight children. No neuroimaging studies have been published with findings for otherwise healthy obese children. Preliminary analysis of functional magnetic resonance imaging (fMRI) data from a pilot study conducted by our lab in obese and normal weight children show that obese children, compared with normal weight children, have greater activation in response to food cues in key regions of the brain, including the insular region, the hippocampal gyrus region, and the orbitofrontal cortex. We hypothesize that in contrast to normal weight children, overweight children respond differently to food cues as measured by fMRI, including greater regional brain activation in the fasting state and a blunted response to feeding. Our specific aims are to determine: (1) Does the pattern of regional brain activation differ between obese versus normal weight children when food cues are compared to non- food cues? (2) Does fasting versus fed status differentially alter the response to food cues in obese children? We will use fMRI at 3.0 Tesla to conduct an exploratory study in 20 obese and 20 normal weight healthy children ages 8-12 to examine for differences in regional brain activity associated with obesity. Subjects will be studied after a 4-hour fast and following ingestion of a standardized meal. Brain response to visually displayed food images will be contrasted with response to non-food items across fasted and fed conditions in normal weight and obese children. This study promises to elucidate the neural substrates of the response of obese children to food cues and provide insight to the relevance of an addiction approach to overeating behavior. Such knowledge is essential in development of evidence-based methods for prevention and treatment of childhood obesity. Obesity is a major and increasingly important cause of morbidity and mortality, and exposure to visual images of food may contribute greatly to overeating and obesity. This brain study will improve our understanding of the process by which food cues undergo processing and help in the development of behavioral, psychosocial, and environmental interventions and promotions of healthy choices and behavior.
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