Mechanisms of vasovagal syncope in the young: reduced systemic vascular resistance versus reduced cardiac output
Author(s)
Type
Journal Article
Abstract
Background Syncope is a sudden transient loss of consciousness and postural tone caused by cerebral hypoperfusion. The most common form is vasovagal syncope (VVS). Presyncopal progressive early hypotension in older VVS patients is caused by reduced cardiac output (CO); younger patients have reduced systemic vascular resistance (SVR). Using a priori criteria for reduced CO (↓CO) and SVR (↓SVR), we studied 48 recurrent young fainters comparing subgroups of VVS with VVS‐↓CO, VVS‐↓SVR, and both VVS‐↓CO&↓SVR.
Methods and Results Subjects were studied supine and during 70‐degrere upright tilt with a Finometer to continuously measure blood pressure, CO, and SVR and impedance plethysmography to estimate thoracic, splanchnic, pelvic, and calf blood volumes, blood flows, and vascular resistances and electrocardiogram to measure heart rate and rhythm. Central blood volume was decreased in all VVS compared to control. VVS‐↓CO was associated with decreased splanchnic blood flow and increased splanchnic blood pooling compared to control. Seventy‐five percent of VVS patients had reduced SVR, including 23% who also had reduced CO. Many VVS‐↓SVR increased CO during tilt, with no difference in splanchnic pooling, caused by significant increases in splanchnic blood flow and reduced splanchnic resistance. VVS‐↓CO&↓SVR patients had splanchnic pooling comparable to VVS‐↓CO patients, but SVR comparable to VVS‐↓SVR. Splanchnic vasodilation was reduced, compared to VVS‐↓SVR, and venomotor properties were similar to control. Combined splanchnic pooling and reduced SVR produced the earliest faints among the VVS groups.
Conclusions Both ↓CO and ↓SVR occur in young VVS patients. ↓SVR is predominant in VVS and is caused by impaired splanchnic vasoconstriction.
Methods and Results Subjects were studied supine and during 70‐degrere upright tilt with a Finometer to continuously measure blood pressure, CO, and SVR and impedance plethysmography to estimate thoracic, splanchnic, pelvic, and calf blood volumes, blood flows, and vascular resistances and electrocardiogram to measure heart rate and rhythm. Central blood volume was decreased in all VVS compared to control. VVS‐↓CO was associated with decreased splanchnic blood flow and increased splanchnic blood pooling compared to control. Seventy‐five percent of VVS patients had reduced SVR, including 23% who also had reduced CO. Many VVS‐↓SVR increased CO during tilt, with no difference in splanchnic pooling, caused by significant increases in splanchnic blood flow and reduced splanchnic resistance. VVS‐↓CO&↓SVR patients had splanchnic pooling comparable to VVS‐↓CO patients, but SVR comparable to VVS‐↓SVR. Splanchnic vasodilation was reduced, compared to VVS‐↓SVR, and venomotor properties were similar to control. Combined splanchnic pooling and reduced SVR produced the earliest faints among the VVS groups.
Conclusions Both ↓CO and ↓SVR occur in young VVS patients. ↓SVR is predominant in VVS and is caused by impaired splanchnic vasoconstriction.
Date Issued
2017-01-18
Date Acceptance
2016-12-06
Citation
Journal of the American Heart Association, 2017, 6 (1), pp.1-11
ISSN
2047-9980
Publisher
Wiley Open Access
Start Page
1
End Page
11
Journal / Book Title
Journal of the American Heart Association
Volume
6
Issue
1
Copyright Statement
© 2016 The Authors. This is the accepted version of the following article: Mechanisms of Vasovagal Syncope in the Young: Reduced Systemic Vascular Resistance Versus Reduced Cardiac Output
Julian M. Stewart, Marvin S. Medow, Richard Sutton, Paul Visintainer, David L. Jardine and Wouter Wieling
Journal of the American Heart Association. 2017;6:e004417, originally published January 18, 2017, which has been published in final form at https://dx.doi.org/10.1161/JAHA.116.004417
Julian M. Stewart, Marvin S. Medow, Richard Sutton, Paul Visintainer, David L. Jardine and Wouter Wieling
Journal of the American Heart Association. 2017;6:e004417, originally published January 18, 2017, which has been published in final form at https://dx.doi.org/10.1161/JAHA.116.004417
Subjects
Science & Technology
Life Sciences & Biomedicine
Cardiac & Cardiovascular Systems
Cardiovascular System & Cardiology
cardiac output
syncope
tilt-table testing
vasoconstriction
vasovagal syncope
young
BODY VOLUME CHANGES
POSTURAL TACHYCARDIA SYNDROME
SIMULATED MICROGRAVITY
ORTHOSTATIC HYPOTENSION
PHASE SYNCHRONIZATION
AUTONOMIC CONTROL
BLOOD-PRESSURE
VENOUS RETURN
BED REST
TILT
Publication Status
Published
Article Number
ARTN e004417