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October 1, 1981AJP Heart and Circulatory Physiology39 citations

Effects of central venous blood volume shifts on arterial baroreflex control of heart rate

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GBGeorge E. BillmanDDD. Thomas DickeyKTK. K. Teoh

Structured PICO

Do central venous blood volume shifts reduce arterial baroreflex control of heart rate in rhesus monkeys?

P
Population
9 male rhesus monkeys (7.0-10.5 kg)
I
Intervention
Central venous blood volume shifts induced by body position changes (90 degrees head down tilt) and blood volume expansion (20% or 50% with normal saline) under anesthesia (10 mg/kg ketamine-HCl), with and without beta-receptor blockade
C
Comparator
Awake sitting, anesthetized sitting, and anesthetized recumbent positions
O
Outcome
Baroreflex slope (determined by linear regression of R-R interval plotted against systolic aortic pressure after 4.0 micrograms/kg phenylephrine bolus injection)surrogate

Central blood volume shifts, such as those caused by head-down tilt or volume expansion, significantly reduce arterial baroreflex control of heart rate in a primate model.

Abstract

The purpose of this study was to investigate the effects of anesthesia, body position, and blood volume expansion on baroreflex control of heart rate. Five male rhesus monkeys (7.0-10.5 kg) were given bolus injection of 4.0 micrograms/kg phenylephrine during each of the following situations: awake sitting, anesthetized (AN) (10 mg/kg ketamine-HCl) sitting, AN recumbent, AN 90 degrees head down tilt, and AN 50% blood volume expansion with normal saline. beta-Receptor blockade was also performed on each treatment after anesthesia. Four additional animals were similarly treated after 20% blood volume expansion. R-R interval was plotted against systolic aortic pressure, and the slope was determined by linear regression. Baroreflex slope was significantly (P less than 0.05) reduced by 90 degrees head down tilt and 50% volume expansion both before and after beta-receptor blockade. A similar trend was seen after 20% volume expansion. These data are consistent with the thesis that baroreflex control of heart rate is reduced by central blood volume shifts.

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Cite This Study

Billman et al. (1981) studied this question.

synapsesocial.com/papers/6a15ab4879ff98d0de4ef789https://doi.org/10.1152/ajpheart.1981.241.4.h571
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