Key result
Vagal baroreflex sensitivity derived from the rise in blood pressure during the Valsalva manoeuvre correlated highly with sensitivity derived from blood pressure decrement (r=0.72, P<0.001).
Why the study?
Does vagal baroreflex sensitivity derived from the blood pressure rise during the Valsalva manoeuvre correlate with that derived from the blood pressure decrement and reflect the severity of autonomic failure?
Observational (n=103)
Does vagal baroreflex sensitivity derived from the blood pressure rise during the Valsalva manoeuvre correlate with that derived from the blood pressure decrement and reflect the severity of autonomic failure?
Effect estimate: r=0.72
p-value: p=<0.001
Vagal baroreflex sensitivity determined from the blood pressure increase following phase III of the Valsalva manoeuvre is a valid index that reflects the overall severity of autonomic failure.
Supports BP rise-derived vagal baroreflex sensitivity as valid; leaves open clinical utility for autonomic failure severity in prospective studies.
The baroreflex plays a key role in human BP (blood pressure) regulation. Its efferent limb consists of a vagal and a sympathetic component. The Valsalva manoeuvre is widely used to quantify vagal baroreflex function [BRS_vagal (vagal baroreflex sensitivity)], but most studies have focused on the R-R interval response to BP decrement, even though the subsequent response to an increment in BP is important and different. In the present study, we sought to evaluate whether BRS_vagal can be determined from BRSvagalinc (BRS_vagal derived from the rise in BP during phases III-IV of the Valsalva manoeuvre), to assess the association between BRSvagalinc and BRSvagaldec (BRS_vagal derived from the preceeding BP decrement) and to validate BRSvagalinc as an index of autonomic function. We studied patients with severe autonomic failure (n=49, 25 female), mild autonomic failure (n=25, 11 female) and matched normal controls (n=29, 15 female). BRSvagalinc and BRSvagaldec were calculated as the regression slope of R-R interval and systolic BP during phases III-IV and the early phase II of the Valsalva manoeuvre respectively, and compared these with other autonomic indices across the groups. BRSvagalinc was calculated in all subjects and correlated highly with BRSvagaldec (r=0.72, P<0.001). BRSvagalinc also correlated significantly with BP changes during phases II and IV of the Valsalva manoeuvre and sympathetic barosensitivity. BRSvagalinc was significantly different between the groups, being highest in the controls and lowest in patients with severe autonomic failure. In conclusion, vagal BRS, determined by relating R-R interval with the BP increase following phase III, is a valuable autonomic index, provides additional information about vagal baroreflex function and reflects overall severity of autonomic failure.
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Wada et al. (2014) conducted an observational in Autonomic failure (n=103). Vagal baroreflex sensitivity derived from the rise in BP during the Valsalva manoeuvre (BRSvagalinc) vs. Vagal baroreflex sensitivity derived from BP decrement (BRSvagaldec) was evaluated on Correlation between BRSvagalinc and BRSvagaldec (r=0.72, p=<0.001). Vagal baroreflex sensitivity derived from the rise in blood pressure during the Valsalva manoeuvre correlated highly with sensitivity derived from blood pressure decrement (r=0.72, P<0.001).
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