TY - JOUR
T1 - Clinical and Imaging Markers of Cardiac Function and Brain Health A Meta-Analysis of Community-Based Studies
AU - Cross-Cohort Collaboration
AU - Yaqub, Amber
AU - Bis, Joshua C.
AU - Frenzel, Stefan
AU - Koini, Marisa
AU - Mbangdadji, Djass
AU - Peloso, Gina M.
AU - Talluri, Rajesh
AU - Alonso, Alvaro
AU - Bahls, Martin
AU - Bülow, Robin
AU - Dörr, Marcus
AU - Felix, Stephan
AU - Fohner, Alison
AU - Friedrich, Nele
AU - Hofer, Edith
AU - Kavousi, Maryam
AU - Launer, Lenore J.
AU - Le, Tran
AU - Longstreth, Will
AU - Mosley, Thomas H.
AU - Vernooij, Meike W.
AU - Völzke, Henry
AU - Wittfeld, Katharina
AU - Beiser, Alexa S.
AU - Grabe, Hans J.
AU - Gudnason, Vilmundur
AU - Ikram, Mohammad Arfan
AU - Psaty, Bruce M.
AU - Schmidt, Reinhold
AU - Simino, Jeannette
AU - Seshadri, Sudha
AU - Wolters, Frank J.
N1 - Publisher Copyright:
Copyright © 2025 The Author(s). Published by Wolters Kluwer Health, Inc.
PY - 2025/3/26
Y1 - 2025/3/26
N2 - Background and Objectives Cardiac dysfunction and heart failure are linked to cognitive impairment, but the underlying brain pathology remains undetermined. We investigated associations between cardiac function (measured by echocardiography or cardiac MRI), clinical heart failure, and structural markers on brain MRI, including volumes of gray and white matter (WM), the hippocampus, and white matter hyperintensities (WMHs). Methods We leverage data from 7 prospective, community-based cohorts across Europe and the United States, all part of the Cross-Cohort Collaboration. The included cohorts were the Age, Gene/Environment Susceptibility-Reykjavik Study, Atherosclerosis Risk in Communities study, Austrian Stroke Prevention Study, Cardiovascular Health Study, Framingham Heart Study, Rotterdam Study, and Study of Health in Pomerania (SHIP-START and SHIP-TREND). Each cohort performed cross-sectional multivariable linear regression analyses, after which estimates were pooled through random-effects meta-analysis. Heterogeneity was assessed by the I2 index (%). Results Among 10,889 participants (mean age: 66.8 years, range 52.0–76.0; 56.7% women), markers of systolic dysfunction were consistently associated with smaller total brain volume (TBV) (e.g., adjusted standardized mean difference for moderate to severe dysfunction −0.19, 95% CI −0.31 to −0.07, I2 = 20%). Impaired relaxation and restrictive diastolic dysfunction were also associated with smaller TBV (e.g., for impaired relaxation −0.08, 95% CI −0.15 to −0.01, I2 = 32%) and hippocampal volume (−0.18, 95% CI −0.33 to −0.03, I2 = 0%), with similar results for the E/A-ratio. Systolic and diastolic dysfunction was not consistently associated with volume of WMHs. Among 5 cohorts with available data, 302 (3.4%) participants had clinical heart failure, which was associated with smaller brain volumes, particularly in the hippocampus (−0.13, 95% CI −0.23 to −0.02, I2 = 1%). Discussion In this large study among community-dwelling adults, subclinical cardiac dysfunction was associated with brain imaging markers of neurodegeneration. These findings encourage longitudinal investigations on the effect of maintaining cardiac function on brain health.
AB - Background and Objectives Cardiac dysfunction and heart failure are linked to cognitive impairment, but the underlying brain pathology remains undetermined. We investigated associations between cardiac function (measured by echocardiography or cardiac MRI), clinical heart failure, and structural markers on brain MRI, including volumes of gray and white matter (WM), the hippocampus, and white matter hyperintensities (WMHs). Methods We leverage data from 7 prospective, community-based cohorts across Europe and the United States, all part of the Cross-Cohort Collaboration. The included cohorts were the Age, Gene/Environment Susceptibility-Reykjavik Study, Atherosclerosis Risk in Communities study, Austrian Stroke Prevention Study, Cardiovascular Health Study, Framingham Heart Study, Rotterdam Study, and Study of Health in Pomerania (SHIP-START and SHIP-TREND). Each cohort performed cross-sectional multivariable linear regression analyses, after which estimates were pooled through random-effects meta-analysis. Heterogeneity was assessed by the I2 index (%). Results Among 10,889 participants (mean age: 66.8 years, range 52.0–76.0; 56.7% women), markers of systolic dysfunction were consistently associated with smaller total brain volume (TBV) (e.g., adjusted standardized mean difference for moderate to severe dysfunction −0.19, 95% CI −0.31 to −0.07, I2 = 20%). Impaired relaxation and restrictive diastolic dysfunction were also associated with smaller TBV (e.g., for impaired relaxation −0.08, 95% CI −0.15 to −0.01, I2 = 32%) and hippocampal volume (−0.18, 95% CI −0.33 to −0.03, I2 = 0%), with similar results for the E/A-ratio. Systolic and diastolic dysfunction was not consistently associated with volume of WMHs. Among 5 cohorts with available data, 302 (3.4%) participants had clinical heart failure, which was associated with smaller brain volumes, particularly in the hippocampus (−0.13, 95% CI −0.23 to −0.02, I2 = 1%). Discussion In this large study among community-dwelling adults, subclinical cardiac dysfunction was associated with brain imaging markers of neurodegeneration. These findings encourage longitudinal investigations on the effect of maintaining cardiac function on brain health.
UR - https://www.scopus.com/pages/publications/105002362909
UR - https://www.scopus.com/pages/publications/105002362909#tab=citedBy
U2 - 10.1212/WNL.0000000000213421
DO - 10.1212/WNL.0000000000213421
M3 - Article
C2 - 40138616
AN - SCOPUS:105002362909
SN - 0028-3878
VL - 104
JO - Neurology
JF - Neurology
IS - 8
M1 - e213421
ER -