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October 21, 1997Circulation282 citations

Vagal and Sympathetic Mechanisms in Patients With Orthostatic Vasovagal Syncope

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CMCarlos A. MorilloDEDwain L. EckbergKEKenneth A. Ellenbogen

Key Result

Passive head-up tilt showed that frank presyncope in orthostatic syncope is triggered by the abrupt disappearance of muscle sympathetic nerve activity and precipitous drop in arterial pressure.

Study Design

Type

Observational (n=53)

Structured PICO

What are the vagal and sympathetic mechanisms underlying orthostatic vasovagal syncope?

P
Population
53 otherwise healthy patients with orthostatic syncope undergoing passive 60 degree head-up tilt.
E
Exposure
Passive 60 degree head-up tilt (with low-dose intravenous isoproterenol if presyncope did not develop by 15 minutes) and sequential injections of nitroprusside and phenylephrine
C
Comparator
Patients who did not develop presyncope during tilt testing (nonsyncopal patients)
O
Outcome
Muscle sympathetic nerve activity, RR intervals, and arterial pressure during tilt testingsurrogate

Orthostatic vasovagal syncope is triggered by an abrupt disappearance of muscle sympathetic nerve activity, preceded by subtle vasovagal physiology and impaired vagal baroreflex responses.

Abstract

BACKGROUND: Autonomic and particularly sympathetic mechanisms play a central role in the pathophysiology of vasovagal syncope. We report direct measurements of muscle sympathetic nerve activity in patients with orthostatic vasovagal syncope. METHODS AND RESULTS: We studied 53 otherwise healthy patients with orthostatic syncope. We measured RR intervals and finger arterial pressures and in 15 patients, peroneal nerve muscle sympathetic activity before and during passive 60 degree head-up tilt, with low-dose intravenous isoproterenol if presyncope did not develop by 15 minutes. We measured baroreflex gain before tilt with regression of RR intervals or sympathetic bursts on systolic or diastolic pressures after sequential injections of nitroprusside and phenylephrine. Orthostatic vasovagal reactions occurred in 21 patients, including 7 microneurography patients. Presyncopal and nonsyncopal patients had similar baseline RR intervals, arterial pressure, and muscle sympathetic nerve activity. Vagal baroreflex responses were significantly impaired at arterial pressures below (but not above) baseline levels in presyncopal patients. Initial responses to tilt were comparable; however, during the final 200 seconds of tilt, presyncopal patients had lower RR intervals and diastolic pressures than nonsyncopal patients and gradual reduction of arterial pressure and sympathetic activity. Frank presyncope began abruptly with precipitous reduction of arterial pressure, disappearance of muscle sympathetic nerve activity, and RR interval lengthening. CONCLUSIONS: Patients with orthostatic vasovagal reactions have impaired vagal baroreflex responses to arterial pressure changes below resting levels but normal initial responses to upright tilt. Subtle vasovagal physiology begins before overt presyncope. The final trigger of human orthostatic vasovagal reactions appears to be the abrupt disappearance of muscle sympathetic nerve activity.

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Cite This Study

Morillo et al. (1997) conducted an observational in Orthostatic vasovagal syncope (n=53). Passive 60 degree head-up tilt vs. Nonsyncopal patients was evaluated on Orthostatic vasovagal reactions and muscle sympathetic nerve activity. Passive head-up tilt showed that frank presyncope in orthostatic syncope is triggered by the abrupt disappearance of muscle sympathetic nerve activity and precipitous drop in arterial pressure.

synapsesocial.com/papers/6a6134bb8f214046fa3f2e3bhttps://doi.org/10.1161/01.cir.96.8.2509
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Also Consider

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

  1. 1Autonomic control of vasovagal syncope1998 · 85 citations
  2. 2Persistence of muscle sympathetic nerve activity during vasovagal syncope2010 · 84 citations
  3. 3Recurrent Postural Vasovagal Syncope2011 · 54 citations
  4. 4Hemodynamic Mechanism of Vasovagal Syncope.1996 · 12 citations
  5. 5Cardiovascular regulation in the period preceding vasovagal syncope in conscious humans2003 · 103 citations