Heart rate turbulence: standards of measurement, physiological interpretation, and clinical use: International Society for Holter and Noninvasive Electrophysiology Consensus

Author(s): Bauer A, Malik M, Schmidt G, Barthel P, Bonnemeier H, et al.

Abstract

This consensus statement has been compiled on behalf of the International Society for Holter and Noninvasive Electrophysiology. It reviews the topic of heart rate turbulence (HRT) and concentrates on technologies for measurement, physiologic background and interpretation, and clinical use of HRT. It also lists suggestions for future research. The phenomenon of HRT refers to sinus rhythm cycle-length perturbations after isolated premature ventricular complexes. The physiologic pattern of HRT consists of brief heart rate acceleration (quantified by the so-called turbulence onset) followed by more gradual heart rate deceleration (quantified by the so-called turbulence slope) before the rate returns to a pre-ectopic level. Available physiologic investigations confirm that the initial heart rate acceleration is triggered by transient vagal inhibition in response to the missed baroreflex afferent input caused by hemodynamically inefficient ventricular contraction. A sympathetically mediated overshoot of arterial pressure is responsible for the subsequent heart rate deceleration through vagal recruitment. Hence, the HRT pattern is blunted in patients with reduced baroreflex. The HRT pattern is influenced by a number of factors, provocations, treatments, and pathologies reviewed in this consensus. As HRT measurement provides an indirect assessment of baroreflex, it is useful in those clinical situations that benefit from baroreflex evaluation. The HRT evaluation has thus been found appropriate in risk stratification after acute myocardial infarction, risk prediction, and monitoring of disease progression in heart failure, as well as in several other pathologies.

Similar Articles

Omics meets hypothesisdriven research

Author(s): Ruegg C, Tissot JD, Farmer P, Mariotti A

Trends in prevalence and outcome of heart failure with preserved ejection fraction

Author(s): Owan TE, Hodge DO, Herges RM, Jacobsen SJ, Roger VL, et al.

Outcome of heart failure with preserved ejection fraction in a population-based study

Author(s): Bhatia RS, Tu JV, Lee DS, Austin PC, Fang J, et al.

Global cardiovascular reserve dysfunction in heart failure with preserved ejection fraction

Author(s): Borlaug BA, Olson TP, Lam CS, Flood KS, Lerman A, et al.

Filling pressures and collagen metabolism in hypertensive patients with heart failure and normal ejection fraction

Author(s): Gonzalez A, Lopez B, Querejeta R, Zubillaga E, Echeverria T, et al.

Inflammatory pathways in patients with heart failure and preserved ejection fraction

Author(s): Niethammer M, Sieber M, von Haehling S, Anker SD, Munzel T, et al.

Differences between patients with a preserved and a depressed left ventricular function: a report from the EuroHeart Failure Survey

Author(s): Lenzen MJ, Scholte op Reimer WJ, Boersma E, Vantrimpont PJ, Follath F, et al.

The perindopril in elderly people with chronic heart failure (PEP-CHF) study

Author(s): Cleland JG, Tendera M, Adamus J, Freemantle N, Polonski L, et al.

Proteomic analysis of left ventricular diastolic dysfunction hearts in renovascular hypertensive rats

Author(s): Junhong W, Jing Y, Jizheng M, Shushu Z, Xiangjian C, et al.

Framingham Heart Study 100K Project: genome-wide associations for blood pressure and arterial stiffness

Author(s): Levy D, Larson MG, Benjamin EJ, Newton-Cheh C, Wang TJ, et al.

Genome-wide association study identifies eight loci associated with blood pressure

Author(s): Newton-Cheh C, Johnson T, Gateva V, Tobin MD, Bochud M, et al.

Genome-wide association study of blood pressure and hypertension

Author(s): Levy D, Ehret GB, Rice K, Verwoert GC, Launer LJ, et al.

Initial sequencing and analysis of the human genome

Author(s): Lander ES, Linton LM, Birren B, Nusbaum C, Zody MC, et al.

A second generation human haplotype map of over 3

Author(s): Frazer KA, Ballinger DG, Cox DR, Hinds DA, Stuve LL, et al.

Plasma cytokine parameters and mortality in patients with chronic heart failure

Author(s): Rauchhaus M, Doehner W, Francis DP, Davos C, Kemp M, et al.

Colocalization of myocardial fibrosis and inflammatory cells in rats

Author(s): Hinglais N, Heudes D, Nicoletti A, Mandet C, Laurent M, et al.

Diastolic heart failure: evidence of increased myocardial collagen turnover linked to diastolic dysfunction

Author(s): Martos R, Baugh J, Ledwidge M, O'Loughlin C, Conlon C, et al.

Sex-specific pathways in early cardiac response to pressure overload in mice

Author(s): Witt H, Schubert C, Jaekel J, Fliegner D, Penkalla A, et al.

Sex-dependent differences in left ventricular function and structure in chronic pressure overload

Author(s): Villari B, Campbell SE, Schneider J, Vassalli G, Chiariello M, et al.

Sex-dependent differences in left ventricular function and structure in chronic pressure overload

Author(s): Villari B, Campbell SE, Schneider J, Vassalli G, Chiariello M, et al.

Protein kinase G modulates human myocardial passive stiffness by phosphorylation of the titin springs

Author(s): Kruger M, Kotter S, Grutzner A, Lang P, Andresen C, et al.

Hypophosphorylation of the Stiff N2B titin isoform raises cardiomyocyte resting tension in failing human myocardium

Author(s): Borbely A, Falcao-Pires I, van Heerebeek L, Hamdani N, Edes I, et al.

PKC phosphorylation of titin's PEVK element: a novel and conserved pathway for modulating myocardial stiffness

Author(s): Hidalgo C, Hudson B, Bogomolovas J, Zhu Y, Anderson B, et al.

Role of extracellular matrix in vascular remodeling of hypertension

Author(s): riones AM, Arribas SM, Salaices M

Left ventricular diastolic parameters in 288 normal subjects from 20 to 80 years old

Author(s): Mantero A, Gentile F, Gualtierotti C, Azzollini M, Barbier P, et al.

Uncoupled cardiac nitric oxide synthase mediates diastolic dysfunction

Author(s): Silberman GA, Fan TH, Liu H, Jiao Z, Xiao HD, et al.

Sex Differences in Sympathetic Neural-Hemodynamic Balance: implications for human blood pressure regulation

Author(s): Hart EC, Charkoudian N, Wallin GG, Curry TB, Eisenach JH, et al.

Cytoscape: a software environment for integrated models of biomolecular interaction networks

Author(s): Shannon P, Markiel A, Ozier O, Baliga NS, Wang JT, et al.