TY - JOUR
T1 - Cross-Sectional Relationships of Proximal Aortic Stiffness and Left Ventricular Diastolic Function in Adults in the Community
AU - Spetko, Nicholas
AU - Rong, Jian
AU - Larson, Martin G.
AU - Haidar, Michael
AU - Raber, Inbar
AU - Peters, Kevin
AU - Benjamin, Emelia J.
AU - O’donnell, Christopher J.
AU - Manning, Warren J.
AU - Vasan, Ramachandran S.
AU - Mitchell, Gary F.
AU - Tsao, Connie W.
N1 - Publisher Copyright:
© 2022 The Authors.
PY - 2022/12/20
Y1 - 2022/12/20
N2 - BACKGROUND: Stiffness of the proximal aorta may play a critical role in adverse left ventricular (LV)– vascular interactions and associated LV diastolic dysfunction. In a community-based sample, we sought to determine the association between proximal aortic stiffness measured by cardiovascular magnetic resonance (CMR) and several clinical measures of LV diastolic mechanics. METHODS AND RESULTS: Framingham Heart Study Offspring adults (n=1502 participants, mean 67±9 years, 54% women) with available 1.5T CMR and transthoracic echocardiographic measures were included. Measures included proximal descending aortic strain and aortic arch pulse wave velocity by CMR (2002– 2006) and diastolic function (mitral Doppler E and A wave velocity, E wave area, and LV tissue Doppler e’ velocity) by echocardiography (2005– 2008). Multivariable linear regression analysis was used to relate CMR aortic stiffness measures to measures of echocardiographic LV diastolic function. All con-tinuous variables were standardized. In multivariable-adjusted regression analyses, aortic strain was inversely associated with E wave deceleration time (estimated β=−0.10±0.032, P=0.001), whereas aortic arch pulse wave velocity was inversely associated with E/A ratio (estimated β=−0.094±0.027, P=0.0006), E wave area (estimated β=−0.070±0.027, P=0.010), and e’ (estimated β=−0.061±0.027, P=0.022), all indicating associations of higher aortic stiffness by CMR with less favorable LV diastolic function. Compared with men, women had a larger inverse relationship between pulse wave velocity and E/A ratio (interaction β=−0.085±0.031, P=0.0064). There was no significant effect modification by age or a U-shaped (quadratic) relation between aortic stiffness and LV diastolic function measures. CONCLUSIONS: Higher proximal aortic stiffness is associated with less favorable LV diastolic function. Future studies may clarify temporal relations of aortic stiffness with varying patterns and progression of LV diastolic dysfunction.
AB - BACKGROUND: Stiffness of the proximal aorta may play a critical role in adverse left ventricular (LV)– vascular interactions and associated LV diastolic dysfunction. In a community-based sample, we sought to determine the association between proximal aortic stiffness measured by cardiovascular magnetic resonance (CMR) and several clinical measures of LV diastolic mechanics. METHODS AND RESULTS: Framingham Heart Study Offspring adults (n=1502 participants, mean 67±9 years, 54% women) with available 1.5T CMR and transthoracic echocardiographic measures were included. Measures included proximal descending aortic strain and aortic arch pulse wave velocity by CMR (2002– 2006) and diastolic function (mitral Doppler E and A wave velocity, E wave area, and LV tissue Doppler e’ velocity) by echocardiography (2005– 2008). Multivariable linear regression analysis was used to relate CMR aortic stiffness measures to measures of echocardiographic LV diastolic function. All con-tinuous variables were standardized. In multivariable-adjusted regression analyses, aortic strain was inversely associated with E wave deceleration time (estimated β=−0.10±0.032, P=0.001), whereas aortic arch pulse wave velocity was inversely associated with E/A ratio (estimated β=−0.094±0.027, P=0.0006), E wave area (estimated β=−0.070±0.027, P=0.010), and e’ (estimated β=−0.061±0.027, P=0.022), all indicating associations of higher aortic stiffness by CMR with less favorable LV diastolic function. Compared with men, women had a larger inverse relationship between pulse wave velocity and E/A ratio (interaction β=−0.085±0.031, P=0.0064). There was no significant effect modification by age or a U-shaped (quadratic) relation between aortic stiffness and LV diastolic function measures. CONCLUSIONS: Higher proximal aortic stiffness is associated with less favorable LV diastolic function. Future studies may clarify temporal relations of aortic stiffness with varying patterns and progression of LV diastolic dysfunction.
KW - aortic strain
KW - cardiac magnetic resonance (CMR)
KW - diastolic function
KW - proximal aortic stiffness
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U2 - 10.1161/JAHA.122.027230
DO - 10.1161/JAHA.122.027230
M3 - Article
C2 - 36533620
AN - SCOPUS:85144579587
SN - 2047-9980
VL - 11
JO - Journal of the American Heart Association
JF - Journal of the American Heart Association
IS - 24
M1 - e027230
ER -