Sato A, Sato Y
Department of the Autonomic Nervous System, Tokyo Metropolitan Institute of Gerontology, Japan.
Alzheimer Dis Assoc Disord. 1995 Spring;9(1):28-38. doi: 10.1097/00002093-199505000-00007.
Local metabolites have long been considered to play an important physiological role in regulating regional cerebral blood flow (rCBF). However, the evidence reviewed here emphasizes that the regulation of (rCBF) by central cholinergic nerves is independent of regional metabolism. Activation of the intracranial cholinergic fibers originating in the nucleus basalis of Meynert (NBM) and septal complex releases acetylcholine in the cortex and hippocampus, which results in vasodilation and an increase in rCBF in the cortex and hippocampus. Such intracranial cholinergic vasodilative nerve fibers do not belong to the autonomic nervous system according to the traditional definition by Langley, but interestingly, these fibers behave in the brain similarly to the action of autonomic nerves in peripheral organs. The NBM could be transiently stimulated to increase rCBF by nonpharmacological methods. For example, cutaneous sensory stimulation activates the cholinergic nerves originating from the NBM to enhance rCBF. The increase in rCBF at the diffuse cortices during walking appears to include an excitation of this NBM-originating cholinergic vasodilation system. Other various inputs to the NBM may have a similar effect to enhance rCBF via activation of that cholinergic system, provided the stimulation is delivered properly. Thus the combination of pharmacological and non-pharmacological techniques may provide a balance in our attempts to improve cholinergic replacement therapy.
长期以来,局部代谢产物一直被认为在调节局部脑血流量(rCBF)中发挥重要的生理作用。然而,此处综述的证据强调,中枢胆碱能神经对(rCBF)的调节独立于局部代谢。起源于迈内特基底核(NBM)和隔区复合体的颅内胆碱能纤维激活后,会在皮质和海马中释放乙酰胆碱,这会导致皮质和海马血管舒张以及rCBF增加。根据兰利的传统定义,此类颅内胆碱能舒血管神经纤维不属于自主神经系统,但有趣的是,这些纤维在大脑中的行为与自主神经在周围器官中的作用相似。可以通过非药理学方法短暂刺激NBM以增加rCBF。例如,皮肤感觉刺激会激活起源于NBM的胆碱能神经,以增强rCBF。行走过程中弥漫性皮质的rCBF增加似乎包括对这种起源于NBM的胆碱能舒血管系统的兴奋。只要刺激传递得当,其他各种传入NBM的信号可能会通过激活该胆碱能系统产生类似的效果,以增强rCBF。因此,药理学和非药理学技术的结合可能会在我们改善胆碱能替代疗法的尝试中提供一种平衡。