Autoregulation and CO2 responses of cerebral blood flow in patients with acute severe head injury
- 1 May 1978
- journal article
- research article
- Published by Journal of Neurosurgery Publishing Group (JNSPG) in Journal of Neurosurgery
- Vol. 48 (5) , 689-703
- https://doi.org/10.3171/jns.1978.48.5.0689
Abstract
Regional cerebral blood flow (rCBF), cerebral intraventricular pressure (IVP), systemic arterial blood pressure, and cerebral ventricular fluid (CSF) lactate and pH were studied repeatedly in 23 patients during the acute phase of severe brain injury lasting from 3 to 21 days after the trauma. Cerebrovascular autoregulation was tested repeatedly by angiotensin infusion in 21 of the patients, and CO2 response in 14 by passive hyperventilation. The pressure in the brain ventricles was measured continuously in all patients and kept below 45 mm Hg during the study. If the IVP increased more than 10 mm Hg during the angiotensin infusion (as in 1 case), the autoregulation test was considered contraindicated and the angiotensin infusion was discontinued. Dissociation between cerebrovascular autoregulation and CO2 response was a common phenomenon. Typically, autoregulation appeared preserved in the most severely injured areas of the cerebral cortex when the patient was deeply comatose, but deteriorated concomitantly with recovery; by the time the patient became alert, the autoregulation was always impaired. The CO2 response was impaired only in patients who were deeply comatose and had attacks of decerebrate rigidity; during recovery the CO2 response became normal. Thus, preserved autoregulation associated with impaired CO2 response indicated very severe brain damage, whereas impaired autoregulation associated with preserved CO2 response suggested moderate or severe brain damage in recovery. These paradoxical observations raise the question whether the preserved autoregulation seen in severely injured brain tissue is a true autoregulation caused by an active vasoconstrictor response to an increase in blood pressure.This publication has 26 references indexed in Scilit:
- Reproducibility of regional cerebral blood flow measurements in acute severe head injuryJournal of Neurosurgery, 1978
- Dynamic changes in regional CBF, intraventricular pressure, CSF pH and lactate levels during the acute phase of head injuryJournal of Neurosurgery, 1976
- Global Ischemia in Dogs: Cerebrovascular CO 2 Reactivity and AutoregulationStroke, 1975
- Regional cerebral blood flow and intraventricular pressure in acute head injuriesJournal of Neurology, Neurosurgery & Psychiatry, 1974
- The Effect of Controlled Hyperventilation on Cerebral Blood Flow and Oxygen Uptake in Patients with Brain LesionsActa Anaesthesiologica Scandinavica, 1973
- Cerebral Hemispheric "Counter-Steal" Phenomenon During Hyperventilation in Cerebrovascular DiseasesStroke, 1972
- Microregional blood flow changes in experimental cerebral ischemiaJournal of Neurosurgery, 1971
- THE MECHANISM OF DRAINAGE OF THE CEREBROSPINAL FLUIDBrain, 1970
- Impairment of the Regional Vasomotor Response of Cerebral Vessels to Hypercarbia in Vascular DiseasesEuropean Neurology, 1969
- FORMATION AND ABSORPTION OF CEREBROSPINAL FLUID IN MANBrain, 1968