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July 21, 2005AJP Regulatory Integrative and Comparative Physiology107 citations

Cardiovascular responses to water drinking: does osmolality play a role?

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CBClive BrownLBLuc BarberiniADAbdul G. Dulloo

Structured PICO

Does a water drink compared to physiological saline alter cardiovascular and autonomic responses in healthy subjects?

P
Population
9 healthy subjects (6 male, 3 female, aged 26 +/- 2 years)
I
Intervention
Water drink (7.5 ml/kg body wt)
C
Comparator
Identical volume of physiological (0.9%) saline solution
O
Outcome
Cardiovascular and autonomic responses including heart rate, total peripheral resistance, cardiac interval variability, and baroreceptor sensitivitysurrogate

The acute cardiovascular and autonomic responses to water drinking, including increased sympathetic vasoconstrictor activity and cardiac vagal tone, appear to be driven by its hypoosmotic properties.

Abstract

Water drinking activates the autonomic nervous system and induces acute hemodynamic changes. The actual stimulus for these effects is undetermined but might be related to either gastric distension or to osmotic factors. In the present study, we tested whether the cardiovascular responses to water drinking are related to water's relative hypoosmolality. Therefore, we compared the cardiovascular effects of a water drink (7.5 ml/kg body wt) with an identical volume of a physiological (0.9%) saline solution in nine healthy subjects (6 male, 3 female, aged 26 +/- 2 years), while continuously monitoring beat-to-beat blood pressure (finger plethysmography), cardiac intervals (electrocardiography), and cardiac output (thoracic impedance). Total peripheral resistance was calculated as mean blood pressure/cardiac output. Cardiac interval variability (high-frequency power) was assessed by spectral analysis as an index of cardiac vagal tone. Baroreceptor sensitivity was evaluated using the sequence technique. Drinking water, but not saline, decreased heart rate (P = 0.01) and increased total peripheral resistance (P < 0.01), high-frequency cardiac interval variability (P = 0.03), and baroreceptor sensitivity (P = 0.01). Neither water nor saline substantially increased blood pressure. These responses suggest that water drinking simultaneously increases sympathetic vasoconstrictor activity and cardiac vagal tone. That these effects were absent after drinking physiological saline indicate that the cardiovascular responses to water drinking are influenced by its hypoosmotic properties.

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Cite This Study

Brown et al. (2005) studied this question.

synapsesocial.com/papers/6a70480f8031ec7bb1dc3b0bhttps://doi.org/10.1152/ajpregu.00205.2005
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