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April 1, 2000European Heart Journal224 citationsOpen Access

Cardiac rotation and relaxation in patients with aortic valve stenosis

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ENEike Nagel

Structured PICO

How does severe aortic valve stenosis affect the rotational motion and relaxation of the left ventricle compared to controls?

P
Population
25 subjects, comprising 13 patients with severe aortic valve stenosis and 12 controls
I
Intervention
Myocardial tagging using magnetic resonance imaging
C
Comparator
Controls
O
Outcome
Time course of rotational motion of the left ventricle (cardiac rotation, radial displacement, and translational motion)surrogate

Severe aortic valve stenosis is associated with altered left ventricular rotational mechanics, including increased apical rotation and delayed diastolic untwisting, which may contribute to diastolic dysfunction.

Abstract

BACKGROUND: Diastolic dysfunction with delayed relaxation and abnormal passive elastic properties has been described in patients with severe pressure overload hypertrophy. The purpose of this study was to evaluate the time course of rotational motion of the left ventricle in patients with aortic valve stenosis using myocardial tagging. METHODS: Myocardial tagging is a non-invasive method based on magnetic resonance which makes it possible to label ('tag') specific myocardial regions. From the motion of the tag's cardiac rotation, radial displacement and translational motion can be determined. In 12 controls and 13 patients with severe aortic valve stenosis systolic and diastolic wall motion was assessed in an apical and basal short axis plane. RESULTS: The normal left ventricle performs a systolic wringing motion around the ventricular long axis with clockwise rotation at the base (-4.4+/-1.6 degrees) and counter-clockwise rotation at the apex (+6.8+/-2.5 degrees) when viewed from the apex. During early diastole an untwisting motion can be observed which precedes diastolic filling. In patients with aortic valve stenosis systolic rotation is reduced at the base (-2.4+/-2.0 degrees; P<0.01) but increased at the apex (+12.0+/-6.0 degrees; P<0.05). Diastolic untwisting is delayed and prolonged with a decrease in normalized rotation velocity (-6.9+/-1.1 s(-1)) when compared to controls (-10.7+/-2.2 s(-1); P<0.001). Maximal systolic torsion is 8.0+/-2.1 degrees in controls and 14.1+/-6.4 degrees (P<0.01) in patients with aortic valve stenosis. CONCLUSIONS: Left ventricular pressure overload hypertrophy is associated with a reduction in basal and an increase in apical rotation resulting in increased torsion of the ventricle. Diastolic untwisting is delayed and prolonged. This may explain the occurrence of diastolic dysfunction in patients with severe pressure overload hypertrophy.

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Cite This Study

Eike Nagel (2000) studied this question.

synapsesocial.com/papers/6a01bcc6950a93c470d8b55ehttps://doi.org/10.1053/euhj.1999.1736
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