Rhythmicity of urinary sodium excretion, mean arterial blood pressure, and heart rate in conscious dogs

Author:

Palm U.1,Boemke W.1,Reinhardt H. W.1

Affiliation:

1. Universitatsklinikum Rudolf Virchow Standort Charlottenburg, Free University of Berlin, Federal Republic of Germany.

Abstract

The existence of urinary excretion rhythms in dogs, which is a matter of controversy, was investigated under strictly controlled intake and environmental conditions. In seven conscious dogs, 14.5 mmol Na, 3.55 mmol K, and 91 ml H2O.kg body wt-1.24 h-1 were either administered with food at 8:30 A.M. or were continuously infused at 2 consecutive days. During these 3 days, automatized 20-min urine collections, mean arterial blood pressure (MABP), and heart rate (HR) recordings were performed without disturbing the dogs. Fundamental and partial periodicities, the noise component of urinary sodium excretion (UNaV), MABP, and HR were analyzed using a method derived from Fourier and Cosinor analysis. Oral intake (OI) leads to powerful 24-h periodicities in all dogs and seems to synchronize UNaV. UNaV on OI peaked between 1 and 3 P.M. Under the infusion regimen, signs of nonstationary rhythms and desynchronization predominated. UNaV under the infusion regimen could be separated into two components: a rather constant component continuously excreted and superimposed to this an oscillating component. No direct coupling between UNaV and MABP periodicities could be demonstrated. On OI, an increase in HR seems to advance the peak UNaV in the postprandial period. HR and MABP signals were both superimposed with noise. We conclude that UNaV rhythms are present in dogs. They are considerably more pronounced on OI.

Publisher

American Physiological Society

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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1. Circadian Control of Sodium and Blood Pressure Regulation;American Journal of Hypertension;2021-06-24

2. Mechanisms of sodium balance: total body sodium, surrogate variables, and renal sodium excretion;American Journal of Physiology-Regulatory, Integrative and Comparative Physiology;2018-11-01

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