Morita-Tsuzuki Y, Hardebo J E, Bouskela E
Department of Medical Cell Research, University of Lund, Sweden.
J Vasc Res. 1993 Sep-Oct;30(5):263-71. doi: 10.1159/000159005.
Morphological and pharmacological findings support that different cerebrovascular nerve types have close relationships in the vessel wall and that interactions may contribute to the control of vascular tone. This study in rat investigates whether interaction in blood flow regulation occurs between sympathetic, parasympathetic and sensory nerves in the cerebral vessels. Cortical blood flow (CBF) was measured with a laser-Doppler flowmeter during electrical stimulation of one of the nerves, with or without prior denervation of one or two of the other nerves. Unilateral sympathetic stimulation significantly decreased CBF ipsilaterally. The response was unaffected in magnitude and time course by parasympathetic or sensory denervation. Sensory nerve stimulation did not significantly affect CBF, even after sympathetic denervation. Parasympathetic nerve stimulation caused a marked increase in CBF, which was similar in magnitude in the presence or absence of sympathetic innervation. However, the return to the basal CBF level after parasympathetic stimulation was prolonged after sympathetic denervation. Thus, activation of the sympathetic nerves may contribute to a rapid normalization of the enhanced CBF during parasympathetic nerve stimulation, whereas the reverse phenomenon, parasympathetic normalization of the sympathetically induced CBF reduction, does not occur.
形态学和药理学研究结果支持,不同类型的脑血管神经在血管壁中存在密切关系,且相互作用可能有助于控制血管张力。本大鼠研究旨在探究脑血管中交感神经、副交感神经和感觉神经之间在血流调节方面是否存在相互作用。在电刺激其中一条神经时,使用激光多普勒血流仪测量皮质血流量(CBF),其中一条或两条其他神经预先去神经支配或未预先去神经支配。单侧交感神经刺激可使同侧CBF显著降低。副交感神经或感觉神经去神经支配对该反应的幅度和时程无影响。即使在交感神经去神经支配后,感觉神经刺激也不会显著影响CBF。副交感神经刺激可使CBF显著增加,有无交感神经支配时增加幅度相似。然而,交感神经去神经支配后,副交感神经刺激后CBF恢复至基础水平的时间延长。因此交感神经激活可能有助于在副交感神经刺激期间使增强的CBF迅速恢复正常,而交感神经诱导的CBF降低的副交感神经正常化这种相反现象则不会发生。