Loss of cerebral regulation during cardiac output variations in focal cerebral ischemia
- 1 August 1992
- journal article
- Published by Journal of Neurosurgery Publishing Group (JNSPG) in Journal of Neurosurgery
- Vol. 77 (2) , 253-259
- https://doi.org/10.3171/jns.1992.77.2.0253
Abstract
Focal cerebral ischemia was induced in anesthetized macaque monkeys by unilateral middle cerebral artery occlusion. The effect of blood volume expansion by a colloid agent and subsequent exsanguination to baseline cardiac output (CO) on local cerebral blood flow (CBF) was measured by the hydrogen clearance technique in both ischemic and nonischemic brain regions. Cardiac output was increased to maximum levels (159% +/- 92%, mean +/- standard error of the mean) by blood volume expansion with the colloid agent hetastarch, and was then reduced a similar amount (166% +/- 82%) by exsanguination during the ischemic period. Local CBF in ischemic brain regions varied directly with CO, with a correlation coefficient of 0.89 (% change CBF/% change CO), while CBF in nonischemic brain was not affected by upward or downward manipulations of CO. The difference in these responses between ischemic and nonischemic brain was highly significant (p less than 0.001). The results of this study show a profound loss of regulatory control in ischemic brain in response to alterations in CO, thereby suggesting that blood volume variations may cause significant changes in the intensity of ischemia. It is proposed that CO monitoring and manipulation may be vital for optimum care of patients with acute cerebral ischemia.Keywords
This publication has 32 references indexed in Scilit:
- Adjusted hypervolemic hemodilution in acute ischemic stroke.Stroke, 1990
- Relationship between cardiac output and cerebral blood flow in patients with intact and with impaired autoregulationJournal of Neurosurgery, 1990
- Multicenter trial of hemodilution in acute ischemic stroke. Results of subgroup analyses. Scandinavian Stroke Study Group.Stroke, 1988
- Cerebral blood flow is regulated by changes in blood pressure and in blood viscosity alike.Stroke, 1986
- Depression of Circulating Blood Volume in Patients after Subarachnoid Hemorrhage: Implications for the Management of Symptomatic VasospasmNeurosurgery, 1984
- Relationship of cerebral blood flow to cardiac output, mean arterial pressure, blood volume, and alpha and beta blockade in catsJournal of Neurosurgery, 1980
- Cortical evoked potential and extracellular K+ and H+ at critical levels of brain ischemia.Stroke, 1977
- The Distribution and Density of Reduced Cerebral Blood Flow Following Acute Middle Cerebral Artery Occlusion: An Experimental Study by the Technique of Hydrogen Clearance in BaboonsStroke, 1974
- Transorbital Approach to the Middle Cerebral Artery of the Squirrel Monkey: A Technique for Experimental Cerebral Infarction Applicable to Ultrastructural StudiesStroke, 1970
- Autoregulation of Cerebral Blood FlowCirculation, 1968