PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 1, 1999AJP Heart and Circulatory Physiology295 citations

Human sympathetic and vagal baroreflex responses to sequential nitroprusside and phenylephrine

View Full Paper
LRLászló RudasACAlexandra A. CrossmanCMCarlos A. Morillo

Structured PICO

Does sequential intravenous nitroprusside and phenylephrine accurately characterize human sympathetic and vagal baroreflex responses in healthy adults?

P
Population
18 healthy men and women
I
Intervention
Sequential intravenous bolus injections of nitroprusside followed by phenylephrine and phenylephrine followed by nitroprusside
C
Comparator
Spontaneous fluctuations of systolic arterial pressures and R-R intervals
O
Outcome
Sympathetic and vagal baroreflex slopes and gainssurrogate

Repeated sequential nitroprusside followed by phenylephrine doses provide a simple, efficient means to provoke and characterize human vagal and sympathetic baroreflex responses.

Abstract

We evaluated a method of baroreflex testing involving sequential intravenous bolus injections of nitroprusside followed by phenylephrine and phenylephrine followed by nitroprusside in 18 healthy men and women, and we drew inferences regarding human sympathetic and vagal baroreflex mechanisms. We recorded the electrocardiogram, photoplethysmographic finger arterial pressure, and peroneal nerve muscle sympathetic activity. We then contrasted least squares linear regression slopes derived from the depressor (nitroprusside) and pressor (phenylephrine) phases with 1) slopes derived from spontaneous fluctuations of systolic arterial pressures and R-R intervals, and 2) baroreflex gain derived from cross-spectral analyses of systolic pressures and R-R intervals. We calculated sympathetic baroreflex gain from integrated muscle sympathetic nerve activity and diastolic pressures. We found that vagal baroreflex slopes are less when arterial pressures are falling than when they are rising and that this hysteresis exists over pressure ranges both below and above baseline levels. Although pharmacological and spontaneous vagal baroreflex responses correlate closely, pharmacological baroreflex slopes tend to be lower than those derived from spontaneous fluctuations. Sympathetic baroreflex slopes are similar when arterial pressure is falling and rising; however, small pressure elevations above baseline silence sympathetic motoneurons. Vagal, but not sympathetic baroreflex gains vary inversely with subjects' ages and their baseline arterial pressures. There is no correlation between sympathetic and vagal baroreflex gains. We recommend repeated sequential nitroprusside followed by phenylephrine doses as a simple, efficientmeans to provoke and characterize human vagal and sympathetic baroreflex responses.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Rudas et al. (1999) studied this question.

synapsesocial.com/papers/6a207ff0b9ae31350fa5e14fhttps://doi.org/10.1152/ajpheart.1999.276.5.h1691
Ask AI
Helpful
Bookmark
Share
View Full Paper