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Updated: Mar 26, 2026

Transthoracic Speckle Tracking Echocardiography for the Quantitative Assessment of Left Ventricular Myocardial Deformation
Published on: October 20, 2016
Cardiac time intervals and the association with 2D-speckle-tracking, tissue Doppler and conventional
Tor Biering-Sørensen1, Jan Skov Jensen1,2, Henrik Ullits Andersen3
1Department of Cardiology, Copenhagen University Hospital Gentofte, Kildegårdsvej 28, 2900, Hellerup, Denmark.
Insights
Cardiac time intervals (CTI) provide prognostic information by reflecting both systolic and diastolic heart function. This study found significant associations between CTI, including the myocardial performance index (MPI) and isovolumic relaxation time (IVRT), and various echocardiographic measures.
Area of Science:
- Cardiology
- Echocardiography
- Diabetology
Background:
- Cardiac time intervals (CTI) are known prognostic markers in cardiovascular health.
- The underlying mechanisms linking CTI to systolic and diastolic function remain unclear.
- Investigating this relationship can enhance the understanding of CTI's prognostic value.
Purpose of the Study:
- To investigate the relationship between cardiac time intervals (CTI) and myocardial function.
- To assess how CTI correlate with systolic and diastolic parameters derived from conventional, tissue Doppler (TDI), and speckle-tracking echocardiography (STE).
Main Methods:
- A cohort of 1088 type 1 diabetes patients without known heart disease was studied.
- Cardiac time intervals (CTI), including isovolumic relaxation time (IVRT), isovolumic contraction time (IVCT), and myocardial performance index (MPI), were measured using TDI M-mode.
- Echocardiographic data from conventional, TDI, and STE methods were collected and analyzed.
Main Results:
- CTI, particularly MPI and IVRT, showed significant associations with both systolic and diastolic functions across all echocardiographic methods.
- Speckle-tracking derived measures, such as global longitudinal strain and strain rate, exhibited strong correlations with CTI.
- Conventional measures like left ventricular ejection fraction also correlated significantly with MPI, IVRT, and IVCT.
Conclusions:
- Cardiac time intervals (CTI), especially MPI and IVRT, are closely linked to myocardial systolic and diastolic function.
- These associations may explain the prognostic significance of CTI in patient populations.
- CTI offer valuable insights into cardiac mechanics beyond traditional echocardiographic assessments.
Abstract:
Cardiac time intervals (CTI) are prognostic above and beyond conventional echocardiographic measures. The explanation may be that CTI contain information about both systolic and diastolic measures; this is, however, unknown. The relationship between the CTI and systolic and diastolic function assessed by conventional, tissue Doppler (TDI) and speckle-tracking echocardiography (STE) was investigated. CTI and echocardiographic measurements, including conventional, STE, and TDI echocardiography, were studied in 1088 type 1 diabetes patients without known heart disease randomly selected from the out-patient clinic at Steno Diabetes Center. The CTI were obtained by TDI M-mode through the mitral leaflet and included the isovolumic relaxation time (IVRT), isovolumic contraction time (IVCT), and the myocardial performance index (MPI = (IVRT + IVCT)/ejection time). Standardized beta-values were assessed. Both systolic and diastolic measures associated with CTI. Conventional measures: left ventricular ejection fraction (stand. beta): MPI -0.34, IVRT 0.24, and IVCT -0.21, all p < 0.001. For the TDI measures, the most significant association was found with e': MPI (stand. beta: -0.30, p < 0.001) and IVRT (-0.35, p < 0.001) but no association with IVCT -0.05, p = 0.1). Speckle-tracking derived measures were in general strongly associated with the cardiac time intervals. Thus, global longitudinal strain and MPI (-0.38, p < 0.001), IVRT (-0.23, p < 0.001), and IVCT (-0.10, p < 0.001); and global longitudinal strain rate e and MPI (-0.40, p < 0.001), IVRT (-0.42, p < 0.001), and IVCT (-0.04, p = 0.11). CTI, in particular MPI and IVRT, associate with both systolic and diastolic myocardial function assessed by conventional and newer echocardiographic measures. This may possibly help to explain the prognostic significance of CTI.
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