Left atrial fibrosis and epicardial adipose tissue were associated with worsening left atrial function, including reduced global longitudinal reservoir strain (R=-0.35, P<0.001).
Observational (n=101)
Are left atrial fibrosis and epicardial adipose tissue associated with impaired left atrial strain and function in patients with atrial fibrillation?
Left atrial fibrosis and epicardial adipose tissue, assessed by CMR, are significantly associated with impaired left atrial strain and function in patients with atrial fibrillation.
Effect estimate: R = -0.35
p-value: p=<0.001
AIMS: Structural and fibrotic remodelling is a well-known contributor to the atrial fibrillation (AF) substrate. Epicardial adipose tissue (EAT) is increasingly recognized as a contributor through electrical remodelling in the atria. We aimed to assess the association of LA fibrosis and EAT with LA strain and function using cardiac magnetic resonance (CMR) imaging in patients with AF. METHODS AND RESULTS: LA fibrosis was assessed using late gadolinium enhancement CMR, LA EAT was assessed using the fat-water separation Dixon sequence, and feature tracking was applied to assess global longitudinal strain in its three components reservoir (GLRS), conduit (GLCdS), and contractile (GLCtS). LA emptying fraction and LA volume were measured using the cine sequences. All CMR images were acquired in sinus rhythm. One hundred one AF patients underwent pre-ablation CMR (39% female, average age 62 years). LA fibrosis was negatively associated with the three components of global longitudinal strain (GLRS: R = -0.35, P < 0.001; GLCdS: R = -0.24, P = 0.015; GLCtS: R = -0.2, P = 0.046). Out of the different sections of the LA, fibrosis in the posterior and lateral walls was most negatively correlated with GLRS (R = -0.32, P = 0.001, and R = -0.33, P = 0.001, respectively). LA EAT was negatively correlated with GLCdS (R = -0.453, P < 0.001). LA fibrosis was negatively correlated with LA emptying fraction but LA EAT was not (R = -0.27, P = 0.007, and R = -0.22, P = 0.1, respectively). LA EAT and fibrosis were both positively correlated with LA volume (R = 0.38, P = 0.003, and R = 0.24, P = 0.016, respectively). CONCLUSION: LA fibrosis, a major component of the AF substrate, and EAT, an important contributor, are associated with a worsening LA function through strain analysis by CMR.
Chahine et al. (Fri,) conducted a observational in Atrial fibrillation (n=101). Cardiac magnetic resonance (CMR) imaging was evaluated on Association of LA fibrosis and epicardial adipose tissue with LA strain and function (R = -0.35, p=<0.001). Left atrial fibrosis and epicardial adipose tissue were associated with worsening left atrial function, including reduced global longitudinal reservoir strain (R=-0.35, P<0.001).
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: