Królicki L, Chodobski A, Skolasińska K
Exp Brain Res. 1985;60(3):551-8. doi: 10.1007/BF00236941.
The effect of stimulation of the medial and lateral reticulo-hypothalamic-hippocampal (RHH) systems on cerebral blood flow (CBF) and electrical activity of the hippocampus and neocortex was examined in 19 encéphale isolé cats. ECoG was recorded from posterior sigmoid gyri and marginal gyri and hippocampal activity from dorsal hippocampus. Changes in hippocampal activity were evoked by electrical stimulation of RHH systems. CBF was measured by external monitoring of the clearance of 133Xe given as a single bolus in the carotid artery. Stimulation of the lateral system resulted in desynchronisation of ECoG and hippocampal activity without changes in CBF. Stimulation of the medial system elicited desynchronisation in ECoG modulated by theta-like synchrony, theta activity in the hippocampus and a 45% CBF increase. After atropine administration, low frequency, high voltage waves appeared in both ECoG and hippocampal activity, but no change in CBF was observed. During stimulation of the medial system there were no changes in the type of electrical activity but the CBF response was still preserved (increase by 50%). Stimulation of the lateral system did not change either the type of electrical activity or the CBF. The results indicate that the two systems of neuronal pathways, which mediate two different patterns of electrical response in the dorsal hippocampus but similar ECoG activity in the neocortex, elicit different CBF responses. It is argued that the alterations of electrical activity of the neocortex and hippocampus mediated by these two pathways depend on the cholinergic system, whereas the CBF changes depend on a different mechanism.
在19只孤立脑猫中,研究了刺激内侧和外侧网状-下丘脑-海马(RHH)系统对脑血流量(CBF)以及海马和新皮质电活动的影响。从乙状窦后回和缘回记录脑电图(ECoG),从背侧海马记录海马活动。通过电刺激RHH系统诱发海马活动的变化。通过外部监测颈动脉单次推注给予的133Xe清除率来测量CBF。刺激外侧系统导致ECoG和海马活动去同步化,而CBF无变化。刺激内侧系统引发由θ样同步调制的ECoG去同步化、海马中的θ活动以及CBF增加45%。给予阿托品后,ECoG和海马活动中均出现低频、高电压波,但未观察到CBF变化。在刺激内侧系统期间,电活动类型无变化,但CBF反应仍保留(增加50%)。刺激外侧系统既未改变电活动类型,也未改变CBF。结果表明,介导背侧海马中两种不同电反应模式但新皮质中ECoG活动相似的两条神经元通路系统,引发不同的CBF反应。有人认为,由这两条通路介导的新皮质和海马电活动改变取决于胆碱能系统,而CBF变化取决于不同机制。