Sustained Poststimulus Elevation in Cerebral Oxygen Utilization after Vascular Recovery
Open Access
- 1 July 2004
- journal article
- research article
- Published by SAGE Publications in Journal of Cerebral Blood Flow & Metabolism
- Vol. 24 (7) , 764-770
- https://doi.org/10.1097/01.wcb.0000124322.60992.5c
Abstract
The brain's response to functional activation is characterized by focal increases in cerebral blood flow. It is generally assumed that this hyperemia is a direct response to the energy demands of activation, the so-called flow-metabolism coupling. Here we report experimental evidence that increases in oxygen metabolism can occur after activation without increases in flow. When using multimodality functional MRI (fMRI) to study visual activation in human brain, we observed a postactivation period of about 30 seconds during which oxygen consumption remained elevated, while blood flow and volume had already returned to baseline levels. The finding of such a prolonged and complete dissociation of vascular response and energy metabolism during the poststimulus period indicates that increased metabolic demand needs not per se cause a concomitant increase in blood flow. The results also show that the postactivation undershoot after the positive blood-oxygen-level-dependent hemodynamic response in fMRI should be reinterpreted as a continued elevation of oxygen metabolism, rather than a delayed blood volume compliance.Keywords
This publication has 35 references indexed in Scilit:
- Coupling of Total Hemoglobin Concentration, Oxygenation, and Neural Activity in Rat Somatosensory CortexNeuron, 2003
- The neural basis of functional brain imaging signalsPublished by Elsevier ,2002
- An Energy Budget for Signaling in the Grey Matter of the BrainJournal of Cerebral Blood Flow & Metabolism, 2001
- Measurement of tissue oxygen extraction ratios from venous blood T2: Increased precision and validation of principleMagnetic Resonance in Medicine, 2001
- Temporal dynamics of the partial pressure of brain tissue oxygen during functional forepaw stimulation in ratsNeuroscience Letters, 2001
- Dynamics of blood flow and oxygenation changes during brain activation: The balloon modelMagnetic Resonance in Medicine, 1998
- Observation of a fast response in functional MRMagnetic Resonance in Medicine, 1994
- Microenvironment of respiratory neurons in the in vitro brainstem‐spinal cord of neonatal rats.The Journal of Physiology, 1993
- Perfusion imagingMagnetic Resonance in Medicine, 1992
- Focal physiological uncoupling of cerebral blood flow and oxidative metabolism during somatosensory stimulation in human subjects.Proceedings of the National Academy of Sciences, 1986