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How Does the Left Ventricle Work? Ventricular Rotation as a New Index of Cardiac Performance

Although simple cylindrical or ellipsoidal left ventricular (LV) geometry with transverse or circumferential muscle contraction has been traditionally used to estimate LV performance, the estimated LV ejection fraction (EF) with muscle fiber shortening up to 20% is less than 50% of maximum, which is...

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Autor principal: Song, Jae-Kwan
Formato: Texto
Lenguaje:English
Publicado: The Korean Society of Cardiology 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2771832/
https://www.ncbi.nlm.nih.gov/pubmed/19949617
http://dx.doi.org/10.4070/kcj.2009.39.9.347
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author Song, Jae-Kwan
author_facet Song, Jae-Kwan
author_sort Song, Jae-Kwan
collection PubMed
description Although simple cylindrical or ellipsoidal left ventricular (LV) geometry with transverse or circumferential muscle contraction has been traditionally used to estimate LV performance, the estimated LV ejection fraction (EF) with muscle fiber shortening up to 20% is less than 50% of maximum, which is lower than the normal EF observed in routine clinical practice. Thus, oblique fiber orientation and LV rotation, in addition to radial thickening and longitudinal shortening, is predicted as an essential component of effective LV pumping. This was confirmed by animal experiments using surgically implanted markers or invasive sonomicrometry. Demonstration of the muscle band extending from the pulmonary artery to the aorta, which connects the ventricular myocardium, both right ventricle and LV as a continuous band (muscle band theory) provides an anatomical backbone of helical configuration of the cardiac muscle band with descending and ascending segments wrapping the LV apex. Moreover, sequential, non-simultaneous, activation and contraction of the helicoids muscle band contributes to LV rotation or twist motion. Recently, magnetic resonance imaging and speckle tracking echocardiography (STE) techniques have provided an excellent noninvasive way to measure LV rotation and twist, which is expected to contribute to a more thorough evaluation of both LV systolic and diastolic function. Initial animal experiments showed that quantification of apical rotation or LV twist using STE is more accurate for estimating LV systolic function than conventional EF under a variety of LV inotropic conditions, irrespective of coronary ligation. As de-rotation or the untwisting rate can also be measured by STE, the role of ventricular untwisting as a temporal link between LV relaxation and suction can be addressed. Further clinical investigations are needed to determine the real clinical impact of these new indices of LV mechanical function.
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spelling pubmed-27718322009-11-30 How Does the Left Ventricle Work? Ventricular Rotation as a New Index of Cardiac Performance Song, Jae-Kwan Korean Circ J Review Although simple cylindrical or ellipsoidal left ventricular (LV) geometry with transverse or circumferential muscle contraction has been traditionally used to estimate LV performance, the estimated LV ejection fraction (EF) with muscle fiber shortening up to 20% is less than 50% of maximum, which is lower than the normal EF observed in routine clinical practice. Thus, oblique fiber orientation and LV rotation, in addition to radial thickening and longitudinal shortening, is predicted as an essential component of effective LV pumping. This was confirmed by animal experiments using surgically implanted markers or invasive sonomicrometry. Demonstration of the muscle band extending from the pulmonary artery to the aorta, which connects the ventricular myocardium, both right ventricle and LV as a continuous band (muscle band theory) provides an anatomical backbone of helical configuration of the cardiac muscle band with descending and ascending segments wrapping the LV apex. Moreover, sequential, non-simultaneous, activation and contraction of the helicoids muscle band contributes to LV rotation or twist motion. Recently, magnetic resonance imaging and speckle tracking echocardiography (STE) techniques have provided an excellent noninvasive way to measure LV rotation and twist, which is expected to contribute to a more thorough evaluation of both LV systolic and diastolic function. Initial animal experiments showed that quantification of apical rotation or LV twist using STE is more accurate for estimating LV systolic function than conventional EF under a variety of LV inotropic conditions, irrespective of coronary ligation. As de-rotation or the untwisting rate can also be measured by STE, the role of ventricular untwisting as a temporal link between LV relaxation and suction can be addressed. Further clinical investigations are needed to determine the real clinical impact of these new indices of LV mechanical function. The Korean Society of Cardiology 2009-09 2009-09-30 /pmc/articles/PMC2771832/ /pubmed/19949617 http://dx.doi.org/10.4070/kcj.2009.39.9.347 Text en Copyright © 2009 The Korean Society of Cardiology http://creativecommons.org/licenses/by-nc/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Review
Song, Jae-Kwan
How Does the Left Ventricle Work? Ventricular Rotation as a New Index of Cardiac Performance
title How Does the Left Ventricle Work? Ventricular Rotation as a New Index of Cardiac Performance
title_full How Does the Left Ventricle Work? Ventricular Rotation as a New Index of Cardiac Performance
title_fullStr How Does the Left Ventricle Work? Ventricular Rotation as a New Index of Cardiac Performance
title_full_unstemmed How Does the Left Ventricle Work? Ventricular Rotation as a New Index of Cardiac Performance
title_short How Does the Left Ventricle Work? Ventricular Rotation as a New Index of Cardiac Performance
title_sort how does the left ventricle work? ventricular rotation as a new index of cardiac performance
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2771832/
https://www.ncbi.nlm.nih.gov/pubmed/19949617
http://dx.doi.org/10.4070/kcj.2009.39.9.347
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