Frequency Dependence of Local Cerebral Blood Flow Induced by Somatosensory Hind Paw Stimulation in Rat under Normo- and Hypercapnia.
Open Access
- 1 January 2001
- journal article
- Published by Physiological Society of Japan in The Japanese Journal of Physiology
- Vol. 51 (2), 201-208
- https://doi.org/10.2170/jjphysiol.51.201
Abstract
We measured the field potential and the changes in local cerebral blood flow (LCBF) response during somatosensory activation (evoked LCBF) in α-chloralose-anesthetized rats by laser-Doppler flowmetry under normocapnia (PaCO2=34.3±3.8 mmHg) and hypercapnia (PaCO2=70.1±9.8 mmHg). Somatosensory activation was induced by electrical stimulation (0.2, 1, and 5 Hz with 1.5 mA for 5 s) of the hind paw. The neuronal activity of the somatosensory area of the hind paw was linear to the stimulus frequency, and there was no significant difference in the neuronal activity between hypercapnia and normocapnia. The baseline level of LCBF under hypercapnia was about 72.2% higher than that under normocapnia (p<0.01). The absolute response magnitude under hypercapnia was greater than that under normocapnia (p<0.05). The evoked LCBF under both conditions showed a frequency-dependent increase in the 0.2 to 5 Hz range, and the difference in the absolute response magnitude at the same stimulus frequency between normocapnia and hypercapnia became large with increasing stimulus frequency (p<0.05). On the other hand, after normalization to each baseline level there was no significant difference in the response magnitude of the normalized evoked LCBF between normocapnia and hypercapnia, indicating that the normalized evoked LCBF reflects neuronal activity even when the baseline LCBF was changed by the PaCO2 level. The peak time and termination time of LCBF response curves with respect to the graded neuronal activity at 1 and 5 Hz stimulation increased significantly under hypercapnia, compared with those under normocapnia (p<0.05), although the rise time of 0.5 s was nearly constant. In conclusion, the results suggest a synergistic effect of the combined application of graded neuronal stimuli and hypercapnia on the LCBF responseKeywords
This publication has 24 references indexed in Scilit:
- Evoked local cerebral blood flow induced by somatosensory stimulation is proportional to the baseline flowNeuroscience Research, 2000
- Hemodynamics evoked by microelectrical direct stimulation in rat somatosensory cortexComparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, 1999
- Role of Potassium Channels in Regulation of Cerebral Vascular ToneJournal of Cerebral Blood Flow & Metabolism, 1998
- Signal averaged laser Doppler measurements of activation–flow coupling in the rat forepaw somatosensory cortexBrain Research, 1998
- Blood flow increases linearly in rat somatosensory cortex with increased whisker movement frequencyBrain Research, 1998
- Laser‐Doppler measurements of concentration and velocity of moving blood cells in rat cerebral circulationActa Physiologica Scandinavica, 1997
- Dynamics of regional cerebral blood flow for various visual stimuliExperimental Brain Research, 1989
- Functional Activation of Cerebral Blood Flow and Metabolism before and after Global Ischemia of Rat BrainJournal of Cerebral Blood Flow & Metabolism, 1988
- Cerebral circulation and metabolismJournal of Neurosurgery, 1984
- Control of cerebral blood vessels: Present state of the artAnnals of Neurology, 1978