Department of Nuclear Medicine, Chang Gung Memorial Hospital-Kaohsiung Medical Center, Chang Gung University College of Medicine, Kaohsiung, Taiwan.
Neuroimage. 2011 Jan 1;54(1):142-7. doi: 10.1016/j.neuroimage.2010.07.058. Epub 2010 Aug 2.
Brown adipose tissue (BAT) is a highly specialized thermogenic tissue and has profound effects on body weight, energy balance, and glucose metabolism. Body temperature regulation depends on the integrated activities of the autonomic nervous system, which is centered predominantly in the hypothalamus. The purpose of this study was to explore the interaction of brain and the activation of BAT by analyzing differences in brain metabolism between patients with and without activated BAT. Fluorodeoxyglucose (FDG) with positron emission tomography/computer tomography (PET/CT) was used to determine the activation of BAT and brain metabolism. After reviewing FDG PET/CT scans, we retrospectively collected 42 patients, 21 with activated BAT and 21 matched controls without activated BAT. We used the method of defining regions of interest (ROI) to examine differences in metabolism between their hypothalami and voxel (volumetric pixel)-based statistical parametric mapping to analyze the whole brain. Compared with controls, patients with activated BAT had a significant hypermetabolic area in the right inferior parietal lobule (Brodmann area 40) and significant hypometabolic areas in the left insula (Brodmann area 13) and right cerebellum; however, there were no metabolic differences in the hypothalamic regions. Our findings illustrate the close relationship of cold temperature exposure-triggered hypermetabolism in the right inferior parietal lobule and activated BAT. They also support the hypotheses that the insula and cerebellum regulate autonomic functions, which are important for controlling BAT thermogenesis within the central pathways.
棕色脂肪组织(BAT)是一种高度特化的产热组织,对体重、能量平衡和葡萄糖代谢有深远影响。体温调节依赖于自主神经系统的综合活动,而自主神经系统的中心主要位于下丘脑。本研究旨在通过分析有和无激活 BAT 的患者之间的大脑代谢差异,探讨大脑与 BAT 激活的相互作用。氟代脱氧葡萄糖(FDG)正电子发射断层扫描/计算机断层扫描(PET/CT)用于确定 BAT 和大脑代谢的激活。在回顾 FDG PET/CT 扫描后,我们回顾性地收集了 42 名患者,其中 21 名患者有激活的 BAT,21 名匹配的无激活 BAT 的对照患者。我们使用定义感兴趣区域(ROI)的方法来检查下丘脑和体素(体积像素)为基础的统计参数映射之间的代谢差异,以分析整个大脑。与对照组相比,激活 BAT 的患者右侧顶下小叶(Brodmann 区 40)有明显的高代谢区,左侧岛叶(Brodmann 区 13)和右侧小脑有明显的低代谢区;然而,下丘脑区域没有代谢差异。我们的研究结果表明,寒冷温度暴露触发的右侧顶下小叶的高代谢与激活的 BAT 密切相关。它们还支持这样的假说,即岛叶和小脑调节自主功能,这对于控制中枢途径中的 BAT 产热很重要。