Contribution of renal nerves to renal blood flow variability during hemorrhage
- 1 May 1998
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Regulatory, Integrative and Comparative Physiology
- Vol. 274 (5) , R1283-R1294
- https://doi.org/10.1152/ajpregu.1998.274.5.r1283
Abstract
We have examined the role of the renal sympathetic nerves in the renal blood flow (RBF) response to hemorrhage in seven conscious rabbits. Hemorrhage was produced by blood withdrawal at 1.35 ml ⋅ min−1 ⋅ kg−1for 20 min while RBF and renal sympathetic nerve activity (RSNA) were simultaneously measured. Hemorrhage was associated with a gradual increase in RSNA and decrease in RBF from the 4th min. In seven denervated animals, the resting RBF before hemorrhage was significantly greater (48 ± 1 vs. 31 ± 1 ml/min intact), and the decrease in RBF did not occur until arterial pressure also began to fall (8th min); however, the overall percentage change in RBF by 20 min of blood withdrawal was similar. Spectral analysis was used to identify the nature of the oscillations in each variable. Before hemorrhage, a rhythm at ∼0.3 Hz was observed in RSNA, although not in RBF, whose spectrogram was composed mostly of lower-frequency (0.25 Hz was significantly less in intact than denervated rabbits (0.83 ± 0.12 vs. 1.19 ± 0.10 ml ⋅ min−1 ⋅ mmHg−1). Furthermore, the coherence between MAP and RBF was also significantly higher in denervated rabbits, suggesting tighter coupling between the two variables in the absence of RSNA. Before the onset of significant decreases in arterial pressure (up to 10 min), there was an increase in the strength of oscillations centered around 0.3 Hz in RSNA. These were accompanied by increases in the spectral power of RBF at the same frequency. As arterial pressure fell in both groups of animals, the dominant rhythm to emerge in RBF was centered between 0.15 and 0.20 Hz and was present in intact and denervated rabbits. It is speculated that this is myogenic in origin. We conclude that RSNA can induce oscillations in RBF at 0.3 Hz, plays a significant role in altering the effect of oscillations in arterial pressure on RBF, and mediates a proportion of renal vasoconstriction during hemorrhage in conscious rabbits.Keywords
This publication has 27 references indexed in Scilit:
- Autonomic mediation of short-term cardiovascular oscillations after acute hemorrhage in conscious ratsJournal of the Autonomic Nervous System, 1995
- Sympathectomy and Cardiovascular Spectral Components in Conscious Normotensive RatsHypertension, 1995
- Rhythmic contractions of isolated small arteries from rat: influence of the endotheliumActa Physiologica Scandinavica, 1993
- DOES THE HAEMODYNAMIC RESPONSE TO ACUTE CENTRAL HYPOVOLAEMIA DEPEND ON THE RATE OF FALL OF CARDIAC OUTPUT?Clinical and Experimental Pharmacology and Physiology, 1992
- Neurohumoral mechanisms and the role of arterial baroreceptors in the reno-vascular response to haemorrhage in rabbits.The Journal of Physiology, 1991
- Influence of endogenous opiates and cardiac afferents on renal nerve activity during haemorrhage in conscious rabbits.The Journal of Physiology, 1988
- Role of angiotensin II in renal wrap hypertension.Hypertension, 1985
- The renal sympathetic baroreflex in the rabbit. Arterial and cardiac baroreceptor influences, resetting, and effect of anesthesia.Circulation Research, 1985
- The effects of α- or β-adrenergic receptor agonists and antagonists and calcium entry blockers on the spontaneous vasomotionMicrovascular Research, 1984
- Influence of renal nerve activity on arteriolar resistance, ultrafiltration dynamics and fluid reabsorptionPflügers Archiv - European Journal of Physiology, 1981