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Quantitative Autonomic Testing
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Quantitative Autonomic Testing

Published on: July 19, 2011

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Cardiac autonomic testing and diagnosing heart disease. "A clinical perspective"

Nicholas L DePace1, Joy P Mears2, Michael Yayac3

  • 1Clinical Professor of Medicine, Hahnemann Hospital/Drexel University, Drexel University, Philadelphia, PA - USA.

Heart International
|March 23, 2016
PubMed

Insights

Autonomic function testing, measuring parasympathetic and sympathetic (P&S) activity, can identify patients at high risk for major adverse cardiac events (MACE) missed by traditional methods. This aids in targeted therapy and risk reduction for coronary heart disease (CHD).

Area of Science:

  • Cardiology
  • Autonomic Nervous System Function

Background:

  • Coronary heart disease (CHD) is a leading cause of mortality, with traditional risk factors failing to identify all at-risk individuals.
  • Many patients managed with conventional therapies still experience major adverse cardiac events (MACE).

Purpose of the Study:

  • To review traditional and novel risk factors for MACE.
  • To explore the potential of autonomic function testing in improving risk stratification for CHD.

Main Methods:

  • Comparison of traditional and non-traditional, modifiable and non-modifiable risk factors for MACE.
  • Inclusion of newer markers like inflammation, carotid intimal thickening, ankle-brachial index, CT calcium scoring, and autonomic function testing (parasympathetic and sympathetic activity).

Main Results:

  • Traditional risk factors identify many high-risk patients but miss a significant number who develop CHD and MACE.
  • Advanced autonomic dysfunction, including cardiac autonomic neuropathy, is strongly linked to increased cardiac mortality.
  • Autonomic function testing is diagnosable and associated with elevated cardiac mortality risk.

Conclusions:

  • Independent measures of parasympathetic and sympathetic (P&S) activity offer incremental value in risk assessment for CHD.
  • Autonomic testing enables physicians to better target high-risk patients and guide therapy titration to minimize cardiac mortality and morbidity.
Abstract

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