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May 13, 2005The Journal of Physiology163 citationsOpen Access

Autonomic nervous system influence on arterial baroreflex control of heart rate during exercise in humans

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SOShigehiko OgohJFJames P. FisherEDEllen A. Dawson

Key Points

  • This research examines the role of autonomic nervous system components in baroreflex control of heart rate during exercise.
  • Eight subjects performed exercise at various heart rates with and without metoprolol or glycopyrrolate.

Structured PICO

Does beta-1 adrenergic or vagal blockade alter arterial baroreflex sensitivity during exercise in humans?

P
Population
8 human subjects
I
Intervention
Metoprolol (0.16 +/- 0.01 mg/kg) or glycopyrrolate (12.6 +/- 1.6 microg/kg) during 25 min bouts of exercise at a heart rate of 90, 120, and 150 beats/min
C
Comparator
Exercise without metoprolol or glycopyrrolate
O
Outcome
Carotid baroreflex (CBR) function (gain at the operating point of the modelled reflex function curve, GOP)surrogate

The reduction in arterial baroreflex sensitivity during exercise is primarily driven by vagal withdrawal rather than an increase in sympathetic activity.

Abstract

A combination of sympathoexcitation and vagal withdrawal increases heart rate (HR) during exercise, however, their specific contribution to arterial baroreflex sensitivity remains unclear. Eight subjects performed 25 min bouts of exercise at a HR of 90, 120, and 150 beats min-1, respectively, with and without metoprolol (0.16 +/- 0.01 mg kg(-1); mean +/- S.E.M.) or glycopyrrolate (12.6 +/- 1.6 microg kg-1). Carotid baroreflex (CBR) function was determined using 5 s pulses of neck pressure (NP) and neck suction (NS) from +40 to -80 Torr, while transfer function gain (GTF) was calculated to assess the linear dynamic relationship between mean arterial pressure and HR. Spontaneous baroreflex sensitivity (SBR) was evaluated as the slope of sequences of three consecutive beats in which systolic blood pressure and the R-R interval of the ECG either increased or decreased, in a linear fashion. The beta-1 adrenergic blockade decreased and vagal cardiac blockade increased HR both at rest and during exercise (P < 0.05). The gain at the operating point of the modelled reflex function curve (GOP) obtained using NP and NS decreased with workload independent of beta-1 adrenergic blockade. In contrast, vagal blockade decreased GOP from -0.40 +/- 0.04 to -0.06 +/- 0.01 beats min-1 mmHg-1 at rest (P < 0.05). Furthermore, as workload increased both GOP and SBR, and GOP and GTF were correlated (P < 0.001), suggesting that the two dynamic methods applied to evaluate arterial baroreflex (ABR) function provide the same information as the modelled GOP. These findings suggest that during exercise the reduction of arterial baroreceptor reflex sensitivity at the operating point was a result of vagal withdrawal rather than an increase in sympathetic activity.

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Cite This Study

Ogoh et al. (2005) studied this question.

synapsesocial.com/papers/6a07b38644ff8ad339f69a00https://doi.org/10.1113/jphysiol.2005.084541
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effect of dynamic exercise on human carotid-cardiac baroreflex latency1995 · 32 citations
  2. 2Estimation of the conduction time of the baroreceptor-cardiac reflex in man1973 · 105 citations
  3. 3A Mathematical Model to Assess Changes in the Baroreceptor Reflex2008 · 381 citations
  4. 4Assessment of Threshold and Saturation Pressure in the Baroreflex Function Curve:A New Mathematical Analysis.1991 · 43 citations
  5. 5Transfer function analysis of autonomic regulation. I. Canine atrial rate response1989 · 504 citations