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Cerebral Structural And Metabolic Correlates Of Aggressi

Cerebral Structural And Metabolic Correlates Of Aggressi
攻击性的大脑结构和代谢相关性
批准号:
6674346
负责人:
Daniel W Hommer
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至

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中文摘要
翻译
这项研究旨在确定人类受试者的成瘾和攻击/冲动行为的神经解剖学和神经化学相关性。这些研究的主要重点是使用正电子发射断层扫描(PET)测量和关联局部脑葡萄糖代谢活动、使用磁共振成像(MRI)测量脑体积、脑脊液代谢物以及冲动/攻击行为和过量饮酒的测量。我们用1.5T扫描仪收集了完整的T-1加权磁共振图像,测量了255名酗酒者(210名男性和91名女性)和157名健康的非酒精对照组(80名男性和77名女性)的颅内体积。使用自动分割程序将颅内内容分为脑脊液、灰质和白质(人脑图谱,5:194-205,1997)。当我们测量大脑体积时,我们是在测量两个过程的综合影响:生长和退化。生长决定了一生中所能达到的最大大脑大小。脑的最大增长可以通过颅内体积(ICV)来估计,由于ICV在一生中保持不变,因此可以通过脑体积或灰质或白质体积与其余颅内内容的比率来衡量脑退行性变。酗酒者比非酗酒者表现出更大的大脑退化。酗酒的女性比酗酒的男性更容易受到影响。到了二十五岁左右,酗酒者的大脑萎缩程度也明显高于对照组。此外,酗酒者的颅内体积比对照组的小,这表明患病前大脑大小的差异可能是酗酒的风险所在。尽管酗酒者和对照组的脑体积存在显著差异,但与脑生长相比,变性在脑体积差异中所占的比例更大。同样,存在或不存在共病精神障碍或其他物质滥用也不会影响酗酒者的大脑萎缩。在过去的一年里,我们在自动测量大脑体积方面取得了几项方法学上的进步。开发了一种自动将大脑划分为左右半球的方法,并进行了验证。此外,我们还开发了一种自动方法来测量内侧和眼眶额叶皮质的体积,这两个区域是已知的与动机和社会行为有关的区域。
英文摘要
This research is designed to determine neuroanatomical and neurochemical correlates of addictive and aggressive/impulsive behavior in human subjects. The principal focus of these studies is the measurement and correlation of regional cerebral glucose metabolic activity, using positron emission tomography (PET), brain volumes using magnetic resonance imaging (MRI), cerebrospinal fluid metabolites, and measures of impulsive/aggressive behavior and excessive alcohol consumption. We collected full, volumetric T-1 weighted MR images using a 1.5 T scanner to measure intracranial volumes in 255 alcoholics (210 males and 91 females) and 157 healthy, non-alcoholic comparison subjects (80 males and 77 females). An automated segmentation program was used to divide the intracranial contents into CSF, gray and white matter (Human Brain Mapping, 5:194-205, 1997). When we measure brain volume we are measuring the combined effect of two processes: growth and degeneration. Growth determines maximum brain size achieved during life. Maximal brain growth can be estimated by intracranial volume (ICV) and since ICV remains constant throughout life, brain degeneration can be measured by the ratio of cerebral volume or gray matter or white matter volume to the remainder of the intracranial contents. Alcoholics show greater brain degeneration than non-alcoholics. Alcoholic women are more affected than alcoholic men. Alcoholics also show significantly greater brain shrinkage than controls by their mid to late twenties. In addition, alcoholics have smaller intracranial volumes than controls suggesting that pre-morbid differences in brain size may contribute to the risk for alcoholism. Despite the significant difference in intracranial volume brain, degeneration accounts for a greater amount of the difference in brain volume between alcoholics and controls than brain growth does. Similarly, presence or absence of co-morbid psychiatric disorder or other substance abuse does not affect brain shrinkage among alcoholics. Over the past year we have made several methodological advances in the automated measurement of brain volumes. An automated method for dividing the brain into right and left hemispheres was developed and validated. In addition, we have developed an automated method for measuring the volume of mesial and orbital frontal cortex, regions which are known to be involved in motivation and social behavior.
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