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High-frequency high-resolution echocardiography: first evidence on non-invasive repeated measure of myocardial strain, contractility, and mitral regurgitation in the ischemia-reperfused murine heart.

Abstract

Ischemia-reperfusion (IR) was surgically performed in murine hearts which were then subjected to repeated imaging to monitor temporal changes in functional parameters of key clinical significance. Two-dimensional movies were acquired at high frame rate (8 kHz) and were utilized to estimate high-quality myocardial strain. Two-dimensional elastograms (strain images), as well as strain profiles, were visualized. Results were powerful in quantitatively assessing IR-induced changes in cardiac events including left-ventricular (LV) contraction, LV relaxation and isovolumetric phases of both pre-IR and post-IR beating hearts in intact mice. In addition, compromised sector-wise wall motion and anatomical deformation in the infarcted myocardium were visualized. The elastograms were uniquely able to provide information on the following parameters in addition to standard physiological indices that are known to be affected by myocardial infarction in the mouse: internal diameters of mitral valve orifice and aorta, effective regurgitant orifice, myocardial strain (circumferential as well as radial), turbulence in blood flow pattern as revealed by the color Doppler movies and velocity profiles, asynchrony in LV sector, and changes in the length and direction of vectors demonstrating slower and asymmetrical wall movement. This work emphasizes on the visual demonstration of how such analyses are performed.

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  • Authors

    Gnyawali SC, Roy S, Driggs J, Khanna S, Ryan T, Sen CK

    Institution

    Department of Surgery, The Ohio State University, USA.

    Source

    Journal of visualized experiments : JoVE :41 2010 pg

    MeSH

    Animals
    Echocardiography
    Male
    Mice
    Mice, Inbred C57BL
    Mitral Valve Insufficiency
    Myocardial Contraction
    Myocardial Infarction
    Myocardial Ischemia
    Myocardial Reperfusion

    Pub Type(s)

    Research Support, N.I.H., Extramural
    Video-Audio Media

    Language

    eng

    PubMed ID

    20644513