Britton S L, Lutherer L O, Davies D G
J Appl Physiol Respir Environ Exerc Physiol. 1979 Oct;47(4):818-26. doi: 10.1152/jappl.1979.47.4.818.
Total and regional cerebral blood flow (CBF), and cerebrospinal fluid (CSF), and arterial blood acid-base status were measured in 26 chloralose-urethan-anesthetized dogs before and after 30 and 60 min of ventriculocisternal perfusion with artificial CSF equilibrated with 7% CO2 and containing either low (8.7 or 9.1 meq/l), normal (19.6 meq/l), or high (34.7 meq/l) bicarbonate ion concentration ([HCO3-]). An inverse linear relationship was observed between the CSF pH and total CBF. Regional blood flow changes were greater in structures that were closest to the ventricular system. In addition, regional blood flow changes were greater in all tissues studied after 60 min of perfusion than after 30. Perfusion with the control [HCO3-] caused no significant changes in either acid-base status or CBF. We believe that the regional cerebral blood flow changes are the result of changes in the H+ concentration gradient across the cerebral extracellular fluid (ECF) space due to the diffusional exchange of HCO3- between CSF and ECF. It is concluded that cerebral ECF acidity is important in the local regulation of cerebral blood flow.
在26只氯醛糖-氨基甲酸乙酯麻醉的犬中,于用含7%二氧化碳平衡且碳酸氢根离子浓度([HCO₃⁻])分别为低(8.7或9.1毫当量/升)、正常(19.6毫当量/升)或高(34.7毫当量/升)的人工脑脊液进行脑室池灌注30分钟和60分钟前后,测量了全脑和局部脑血流量(CBF)、脑脊液(CSF)以及动脉血酸碱状态。观察到脑脊液pH值与全脑血流量之间呈负线性关系。最靠近脑室系统的结构中局部血流变化更大。此外,灌注60分钟后所有研究组织中的局部血流变化比30分钟后更大。用对照[HCO₃⁻]灌注对酸碱状态或脑血流量均未引起显著变化。我们认为局部脑血流量变化是由于脑脊液与细胞外液(ECF)之间HCO₃⁻的扩散交换导致跨脑细胞外液(ECF)空间的H⁺浓度梯度变化所致。得出的结论是,脑细胞外液酸度在脑血流量的局部调节中很重要。