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March 1, 2003European Heart Journal - Cardiovascular Imaging136 citations

Right Ventricular Outflow-Tract Fractional Shortening: An Applicable Measure of Right Ventricular Systolic Function

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PLPer LindqvistMHMichael HeneinEKElsadig Kazzam

Key Result

Right ventricular outflow tract fractional shortening was significantly reduced in patients compared to controls (P<0.0001) and correlated with pulmonary artery acceleration time (r=0.80, P<0.0001).

Study Design

Type

Observational (n=112)

Structured PICO

Does right ventricular outflow tract fractional shortening measured by M-mode echocardiography provide a reliable assessment of right ventricular systolic function?

P
Population
112 individuals, comprising 92 consecutive patients referred for echocardiographic assessment of left and right ventricular function (mean age 68±14 years) and 20 healthy controls (mean age 46±12 years).
I
Intervention
Measurement of right ventricular outflow tract fractional shortening (RVOT-FS) using M-mode echocardiography
C
Comparator
Healthy controls and established echocardiographic measurements of right ventricular function (long axis excursion, pulmonary artery acceleration time, RV-RA pressure drop)
O
Outcome
Right ventricular outflow tract fractional shortening and its correlation with established measurements of right ventricular functionsurrogate

Right ventricular outflow tract fractional shortening provides a simple, non-invasive measure of right ventricular systolic function that correlates well with established echocardiographic parameters.

Main Result

p-value: p=<0.0001

Abstract

Aims: Assessment of right ventricular function is important. However, this is not easy to achieve due to the complex anatomy and geometry of the right ventricle, making the evaluation of its function limited. Therefore, a simple reliable and easy method is needed. This study was performed (1) to evaluate the use of right ventricular outflow tract fractional shortening obtained by M-mode echocardiography as a measure of right ventricular systolic function and (2) to determine the relationship between this parameter and other established measurements of right ventricular function such as long axis excursion. Methods and Results: Ninety-two consecutive patients referred for echocardiographic assessment of left and right ventricular function, age mean±SD was 68±14 years, were investigated. Twenty healthy controls, age 46±12 years were also studied. M-mode echocardiography was used to measure right ventricular outflow tract fractional shortening and right ventricular long axis excursion. Doppler echocardiography was used for the estimation of right ventricular–right atrial pressure drop and pulmonary artery acceleration time. Right ventricular outflow tract fractional shortening ( P <0·0001), right ventricular long axis excursion ( P <0·0001) and pulmonary acceleration time ( P <0·0001) were reduced in patients compared to controls. Right ventricular outflow tract fractional shortening correlated with long axis excursion (r=0·66 P <0·0001), pulmonary artery acceleration time (r=0·80 P <0·0001) and right ventricular–right atrial pressure drop (r=−0·53 P <0·0001). Right ventricular long axis excursion correlated with right ventricular–right atrial pressure drop though to a lesser significance (r=−0·27 P <0·001). Furthermore, right ventricular outflow tract fractional shortening was reduced in patients with pulmonary hypertension compared to patients without, this difference was not observed in the right ventricular systolic long axis excursion. Conclusion: Right ventricular outflow tract fractional shortening provides a simple and non-invasive measure of right ventricular systolic function. In combination with long axis excursion and Doppler velocities they should provide comprehensive assessment of right ventricular function. Copyright 2002 The European Society of Cardiology. Published by Elsevier Science Ltd. All rights reserved .

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Cite This Study

Lindqvist et al. (2003) conducted an observational in Referred for echocardiographic assessment of ventricular function (n=112). Right ventricular outflow tract fractional shortening measurement vs. Healthy controls was evaluated on Right ventricular outflow tract fractional shortening (p=<0.0001). Right ventricular outflow tract fractional shortening was significantly reduced in patients compared to controls (P<0.0001) and correlated with pulmonary artery acceleration time (r=0.80, P<0.0001).

synapsesocial.com/papers/6a1c57a84ebd09f3dfa9ba6chttps://doi.org/10.1053/euje.4.1.29
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