Cardiac time intervals by tissue Doppler imaging M-mode echocardiography: reproducibility, reference values,

Tor Biering-Sørensen1

  • 1tor.biering@gmail.com.

Danish Medical Journal
|August 2, 2016
PubMed

Insights

A new echocardiographic method using tissue Doppler imaging (TDI) M-mode provides superior assessment of cardiac function compared to conventional methods. This novel approach, measuring cardiac time intervals, offers better reproducibility and prognostic value, detecting impairments even in early hypertension.

Area of Science:

  • Cardiology
  • Echocardiography
  • Cardiac Physiology

Background:

  • Cardiac time intervals reflect myocardial health, changing with disease progression.
  • Conventional methods for assessing cardiac time intervals have limitations.
  • Tissue Doppler imaging (TDI) M-mode offers a novel approach to evaluate cardiac time intervals.

Purpose of the Study:

  • Compare the reproducibility and prognostic value of MPI derived from conventional (MPIConv) versus TDI M-mode (MPITDI).
  • Define normal cardiac time interval values using TDI M-mode.
  • Assess the ability of cardiac time intervals to detect subtle cardiac impairments in hypertension and evaluate their prognostic significance in general and high-risk populations.

Main Methods:

  • Prospective observational studies including the Copenhagen City Heart Study (n=1,915) and STEMI patients (n=391).
  • Cardiac time intervals measured using TDI M-mode and conventional echocardiography.
  • Inclusion of a subgroup undergoing left heart catheterization (n=44).
  • Follow-up data from national registries for mortality and hospital admissions.

Main Results:

  • MPITDI demonstrated superior reproducibility, less clinical confounding, and better prognostic information than MPIConv.
  • MPITDI correlated significantly with invasive and echocardiographic measures of systolic and diastolic function.
  • Cardiac time intervals identified cardiac dysfunction in hypertensive individuals, independent of conventional echocardiography findings.
  • Combined indices (IVRT/ET, MPI) provided incremental prognostic information in both general and STEMI populations.

Conclusions:

  • The TDI M-mode method for MPI is superior to the conventional method in reproducibility, validity, and prognostic power.
  • TDI M-mode cardiac time intervals can detect cardiac dysfunction in hypertension missed by conventional echocardiography.
  • Combined cardiac time intervals offer valuable prognostic information beyond conventional and novel echocardiographic parameters.
Abstract

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