Effects of postural changes on left atrial function in patients with hypertrophic cardiomyopathy. 1998

J Dernellis, and E Tsiamis, and C Stefanadis, and C Pitsavos, and P Toutouzas
Department of Cardiology, Hippokration Hospital, University of Athens, Athens, Greece.

BACKGROUND We assessed left atrial function in normal subjects and in patients with hypertrophic cardiomyopathy (HCM) by using Doppler echocardiography at the supine position and after sudden standing. RESULTS Twenty-seven patients with hypertrophic obstructive cardiomyopathy (HOCM), 17 patients with HCM, and 35 normal subjects were studied. From the transmitral Doppler flow velocities, peak early and late (E and A) waves, E/A ratio, and time velocity integrals (Ei and Ai) were calculated. Left atrial active contribution (LAAC) was assessed as the ratio Ei/(Ei + Ai). Furthermore, isovolumetric relaxation time (IVRT) was estimated by means of Doppler echocardiography. In the supine position, the E/A ratio was similar in the 3 groups. Conversely, LAAC was significantly higher in patients with HOCM (24.4 +/- 2.0) and in patients with HCM (23.3 +/- 3.3) compared with normal subjects (20.3 +/- 2.3, P <.001 and P <.05, respectively). After sudden standing, LAAC increased significantly in normal subjects by 11%, in patients with HOCM by 24%, and in patients with HCM by 13% (P <.001). Similarly, IVRT increased significantly in all study groups (P <. 001). By using stepwise forward multiple linear regression analysis, we found that LAAC was associated with age, IVRT, and body mass index in the supine position and with diastolic blood pressure and IVRT in the standing position. CONCLUSIONS Left atrial contribution to left ventricular filling was increased after sudden changes of posture in normal subjects and in patients with HOCM or HCM.

UI MeSH Term Description Entries
D008297 Male Males
D008875 Middle Aged An adult aged 45 - 64 years. Middle Age
D009200 Myocardial Contraction Contractile activity of the MYOCARDIUM. Heart Contractility,Inotropism, Cardiac,Cardiac Inotropism,Cardiac Inotropisms,Contractilities, Heart,Contractility, Heart,Contraction, Myocardial,Contractions, Myocardial,Heart Contractilities,Inotropisms, Cardiac,Myocardial Contractions
D011187 Posture The position or physical attitude of the body. Postures
D002312 Cardiomyopathy, Hypertrophic A form of CARDIAC MUSCLE disease, characterized by left and/or right ventricular hypertrophy (HYPERTROPHY, LEFT VENTRICULAR; HYPERTROPHY, RIGHT VENTRICULAR), frequent asymmetrical involvement of the HEART SEPTUM, and normal or reduced left ventricular volume. Risk factors include HYPERTENSION; AORTIC STENOSIS; and gene MUTATION; (FAMILIAL HYPERTROPHIC CARDIOMYOPATHY). Cardiomyopathy, Hypertrophic Obstructive,Cardiomyopathies, Hypertrophic,Cardiomyopathies, Hypertrophic Obstructive,Hypertrophic Cardiomyopathies,Hypertrophic Cardiomyopathy,Hypertrophic Obstructive Cardiomyopathies,Hypertrophic Obstructive Cardiomyopathy,Obstructive Cardiomyopathies, Hypertrophic,Obstructive Cardiomyopathy, Hypertrophic
D005260 Female Females
D006439 Hemodynamics The movement and the forces involved in the movement of the blood through the CARDIOVASCULAR SYSTEM. Hemodynamic
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000328 Adult A person having attained full growth or maturity. Adults are of 19 through 44 years of age. For a person between 19 and 24 years of age, YOUNG ADULT is available. Adults
D015150 Echocardiography, Doppler Measurement of intracardiac blood flow using an M-mode and/or two-dimensional (2-D) echocardiogram while simultaneously recording the spectrum of the audible Doppler signal (e.g., velocity, direction, amplitude, intensity, timing) reflected from the moving column of red blood cells. Doppler Echocardiography,Echocardiography, Continuous Doppler,Echocardiography, Two-Dimensional Doppler,2-D Doppler Echocardiography,2D Doppler Echocardiography,Continuous Doppler Echocardiography,Doppler Echocardiography, 2-D,Doppler Echocardiography, 2D,Doppler Echocardiography, Continuous,Doppler Echocardiography, Two-Dimensional,Echocardiography, 2-D Doppler,Echocardiography, 2D Doppler,Two-Dimensional Doppler Echocardiography,2 D Doppler Echocardiography,Doppler Echocardiography, 2 D,Doppler Echocardiography, Two Dimensional,Echocardiography, 2 D Doppler,Echocardiography, Two Dimensional Doppler,Two Dimensional Doppler Echocardiography

Related Publications

J Dernellis, and E Tsiamis, and C Stefanadis, and C Pitsavos, and P Toutouzas
December 2023, JACC. Cardiovascular imaging,
J Dernellis, and E Tsiamis, and C Stefanadis, and C Pitsavos, and P Toutouzas
November 2014, The American journal of cardiology,
J Dernellis, and E Tsiamis, and C Stefanadis, and C Pitsavos, and P Toutouzas
December 1989, Zhonghua nei ke za zhi,
J Dernellis, and E Tsiamis, and C Stefanadis, and C Pitsavos, and P Toutouzas
October 2023, ESC heart failure,
J Dernellis, and E Tsiamis, and C Stefanadis, and C Pitsavos, and P Toutouzas
April 2014, The Journal of small animal practice,
J Dernellis, and E Tsiamis, and C Stefanadis, and C Pitsavos, and P Toutouzas
June 2017, Echocardiography (Mount Kisco, N.Y.),
J Dernellis, and E Tsiamis, and C Stefanadis, and C Pitsavos, and P Toutouzas
September 2021, Journal of the American Society of Echocardiography : official publication of the American Society of Echocardiography,
J Dernellis, and E Tsiamis, and C Stefanadis, and C Pitsavos, and P Toutouzas
May 2020, The Journal of veterinary medical science,
J Dernellis, and E Tsiamis, and C Stefanadis, and C Pitsavos, and P Toutouzas
March 2022, Acta Cardiologica Sinica,
J Dernellis, and E Tsiamis, and C Stefanadis, and C Pitsavos, and P Toutouzas
January 2021, Cardiovascular ultrasound,
Copied contents to your clipboard!