Korf Jakob, Gramsbergen Jan Bert
Department of Psychiatry and Graduate School of Behavioural and Cognitive Neurosciences, Groningen University, Groningen, The Netherlands.
J Neurochem. 2007 Dec;103(5):1697-708. doi: 10.1111/j.1471-4159.2007.04909.x. Epub 2007 Sep 13.
The temporal relationship between cerebral electro-physiological activities, higher brain functions and brain energy metabolism is reviewed. The duration of action potentials and transmission through glutamate and GABA are most often less than 5 ms. Subjects may perform complex psycho-physiological tasks within 50 to 200 ms, and perception of conscious experience requires 0.5 to 2 s. Activation of cerebral oxygen consumption starts after at least 100 ms and increases of local blood flow become maximal after about 1 s. Current imaging technologies are unable to detect rapid physiological brain functions. We introduce the concepts of potential and metabolic brain energy to distinguish trans-membrane gradients of ions or neurotransmitters and the capacity to generate energy from intra- or extra-cerebral substrates, respectively. Higher brain functions, such as memory retrieval, speaking, consciousness and self-consciousness are so fast that their execution depends primarily on fast neurotransmission (in the millisecond range) and action-potentials. In other words: brain functioning requires primarily maximal potential energy. Metabolic brain energy is necessary to restore and maintain the potential energy.
本文综述了大脑电生理活动、高级脑功能和脑能量代谢之间的时间关系。动作电位的持续时间以及通过谷氨酸和γ-氨基丁酸的传递通常小于5毫秒。受试者可以在50至200毫秒内完成复杂的心理生理任务,而有意识体验的感知需要0.5至2秒。脑氧消耗的激活至少在100毫秒后开始,局部血流增加在约1秒后达到最大值。当前的成像技术无法检测快速的大脑生理功能。我们引入了脑电位能量和代谢能量的概念,分别用于区分离子或神经递质的跨膜梯度以及从脑内或脑外底物产生能量的能力。诸如记忆检索、说话、意识和自我意识等高级脑功能非常迅速,其执行主要依赖于快速神经传递(在毫秒范围内)和动作电位。换句话说:大脑功能主要需要最大的电位能量。代谢脑能量对于恢复和维持电位能量是必要的。