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神经性厌食症基于活动的大鼠模型中与运动和食物相关的代谢性脑变化:一项基于体素的微型正电子发射断层扫描研究

Motor- and food-related metabolic cerebral changes in the activity-based rat model for anorexia nervosa: a voxel-based microPET study.

作者信息

van Kuyck Kris, Casteels Cindy, Vermaelen Peter, Bormans Guy, Nuttin Bart, Van Laere Koen

机构信息

Laboratory of Experimental Functional Neurosurgery, Department of Neuroscience and Psychiatry, K.U. Leuven Provisorium I, Minderbroedersstraat 17, 3000 Leuven, Belgium.

出版信息

Neuroimage. 2007 Mar;35(1):214-21. doi: 10.1016/j.neuroimage.2006.12.009. Epub 2006 Dec 16.

Abstract

Anorexia nervosa (AN) is a disorder that is difficult to treat with psycho- or pharmacotherapy. In order to identify involved neurocircuitry, we investigated the cerebral metabolic alterations in the activity-based anorexia (ABA) rat model, where restriction of the food intake period induces hyperactivity and decreased body weight. Cerebral (18)F-fluorodeoxyglucose uptake was investigated in rats in the activity-based anorexia model (n=9) and compared to controls (n=10), using a CTI Focus microPET 220. Regional metabolic changes were investigated using statistical parametric mapping (SPM2) and correlated to weight and hyperactivity measures on a voxel-by-voxel basis. Higher regional metabolism was found in ABA rats in the mediodorsal thalamus, ventral pontine nuclei and cerebellum, while hypometabolism was seen in the left rhinal and bilateral insular cortex, and bilateral ventral striatum (p<0.001). A positive correlation was observed between body weight loss and brain metabolism in the cingulate cortex and surrounding motor and somatosensory cortex (p<0.001). Thus, in the ABA model metabolic changes are present in brain areas related to disease status and weight loss, which share several characteristics with the human disease.

摘要

神经性厌食症(AN)是一种难以通过心理治疗或药物治疗的疾病。为了确定相关的神经回路,我们研究了基于活动的厌食症(ABA)大鼠模型中的脑代谢改变,在该模型中,食物摄入期的限制会导致多动和体重下降。使用CTI Focus microPET 220对基于活动的厌食症模型中的大鼠(n = 9)进行脑(18)F-氟脱氧葡萄糖摄取研究,并与对照组(n = 10)进行比较。使用统计参数映射(SPM2)研究区域代谢变化,并在逐个体素的基础上与体重和多动测量值相关联。在ABA大鼠的丘脑背内侧、脑桥腹侧核和小脑中发现区域代谢较高,而在左侧嗅皮质、双侧岛叶皮质和双侧腹侧纹状体中发现代谢减低(p < 0.001)。在扣带回皮质以及周围的运动和体感皮质中,体重减轻与脑代谢之间观察到正相关(p < 0.001)。因此,在ABA模型中,与疾病状态和体重减轻相关的脑区存在代谢变化,这些变化与人类疾病具有一些共同特征。

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