首页> 外文期刊>Theoretical Biology and Medical Modelling >Linking neuronal brain activity to the glucose metabolism
【24h】

Linking neuronal brain activity to the glucose metabolism

机译:将神经元的大脑活动与葡萄糖代谢联系起来

获取原文
       

摘要

Background Energy homeostasis ensures the functionality of the entire organism. The human brain as a missing link in the global regulation of the complex whole body energy metabolism is subject to recent investigation. The goal of this study is to gain insight into the influence of neuronal brain activity on cerebral and peripheral energy metabolism. In particular, the tight link between brain energy supply and metabolic responses of the organism is of interest. We aim to identifying regulatory elements of the human brain in the whole body energy homeostasis. Methods First, we introduce a general mathematical model describing the human whole body energy metabolism. It takes into account the two central roles of the brain in terms of energy metabolism. The brain is considered as energy consumer as well as regulatory instance. Secondly, we validate our mathematical model by experimental data. Cerebral high-energy phosphate content and peripheral glucose metabolism are measured in healthy men upon neuronal activation induced by transcranial direct current stimulation versus sham stimulation. By parameter estimation we identify model parameters that provide insight into underlying neurophysiological processes. Identified parameters reveal effects of neuronal activity on regulatory mechanisms of systemic glucose metabolism. Results Our examinations support the view that the brain increases its glucose supply upon neuronal activation. The results indicate that the brain supplies itself with energy according to its needs, and preeminence of cerebral energy supply is reflected. This mechanism ensures balanced cerebral energy homeostasis. Conclusions The hypothesis of the central role of the brain in whole body energy homeostasis as active controller is supported.
机译:背景技术能量稳态可确保整个生物体的功能。人脑作为复杂的全身能量代谢的全球调节中的缺失环节,正在受到最近的研究。这项研究的目的是深入了解神经元大脑活动对大脑和周围能量代谢的影响。特别地,大脑能量供应与生物体的代谢反应之间的紧密联系是令人关注的。我们旨在确定人脑在全身能量稳态中的调控元素。方法首先,我们介绍一个描述人体全身能量代谢的通用数学模型。它考虑了能量代谢方面大脑的两个核心作用。大脑被认为是能量消耗者以及监管实例。其次,我们通过实验数据验证我们的数学模型。在健康男性中,经颅直流电刺激与假刺激相刺激后,神经元被激活后,大脑中的高能磷酸盐含量和外周葡萄糖代谢被测量。通过参数估计,我们可以确定模型参数,从而提供对潜在神经生理过程的深入了解。鉴定出的参数揭示了神经元活性对全身葡萄糖代谢调节机制的影响。结果我们的检查支持以下观点:大脑在神经元激活后会增加其葡萄糖供应。结果表明,大脑根据自己的需要为其提供能量,并反映出大脑能量供应的卓越性。该机制确保平衡的脑能量稳态。结论支持大脑在全身能量稳态中作为主动控制者的中心作用的假说。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号