2013•European Heart JournalRequires access

Decreased left atrial peak systolic strain evaluated by two-dimensional speckle tracking reflects left atrial appendage dysfunction in sinus rhythm patients with acute ischemic stroke

S. Sasaki, Hiroki Tamura, Tetsu Watanabe, Satoshi Nishiyama, Masahiro Wanezaki, Mitsunori Ishino, Chika Sato, I. Kubota

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Abstract

It is well known that transesophageal echocardiography (TEE) is useful for evaluating left atrial appendage (LAA) function, but TEE is a semi-invasive procedure. Many clinical studies have shown a close relationship between LAA thrombus formation and left atrial (LA) mechanical remodeling. Left atrial (LA) strain assessed by two-dimensional speckle tracking echocardiography is a new tool to evaluate LA function. However, the association of LA strain and LAA function remains to be fully determined. We performed transthoracic and transesophageal echocardiography in 58 consecutive patients with acute ischemic stroke within 7 days of onset and sinus rhythm at TEE performed (40 males, mean age 71±11 years). Longitudinal LA strain was obtained using two-dimensional speckle tracking imaging at each LA segment, and peak systolic strain (S-LAs) was calculated by averaging the results for each segment. Eight patients had LAA thrombus and/or severe LAA spontaneous echo contrast (LAA-SEC). S-LAs was significantly lower in patients with LAA dysfunction than in those without (34.5±12.5 vs. 15.9±7.2%, P<0.01). S-LAs was significantly correlated with LAA eV (r=0.466, p<0.01). The optimal cut off value of S-LAs for predicting LAA dysfunction was determined for 21% (Figure). In patients with LAA dysfunction, 7 patients had low S-LAs. In those 6 patients (86%) had history of paroxysmal atrial fibrillation before stroke onset. Multivariate logistic regression analysis showed that S-LAs was an independent predictor of LAA thrombus and/or LAA-SEC (odds ratio 1.758, p<0.01). In conclusion, decreased S-LAs was independently associated with LAA dysfunction and thrombus formation in patients with acute ischemic stroke and sinus rhythm at echocardiography Figure 1. Receiver operating characteristics (ROC) curve analysis of LA peak systolic strain for predicting LAA dysfunction.

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What this paper is about

It is well known that transesophageal echocardiography (TEE) is useful for evaluating left atrial appendage (LAA) function, but TEE is a semi-invasive procedure. Many clinical studies have shown a close relationship between LAA thrombus formation and left atrial (LA) mechanical remodeling. Left atrial (LA) strain assessed by two-dimensional speckle tracking echocardiography is a new tool to evaluate LA function. However, the association of LA strain and LAA function remains to be fully determined. We performed transthoracic and transesophageal echocardiography in 58 consecutive patients with acute ischemic stroke within 7 days of onset and sinus rhythm at TEE performed (40 males, mean age 71±11 years). Longitudinal LA strain was obtained using two-dimensional speckle tracking imaging at each LA segment, and peak systolic strain (S-LAs) was calculated by averaging the results for each segment. Eight patients had LAA thrombus and/or severe LAA spontaneous echo contrast (LAA-SEC). S-LAs was significantly lower in patients with LAA dysfunction than in those without (34.5±12.5 vs. 15.9±7.2%, P<0.01). S-LAs was significantly correlated with LAA eV (r=0.466, p<0.01). The optimal cut off value of S-LAs for predicting LAA dysfunction was determined for 21% (Figure). In patients with LAA dysfunction, 7 patients had low S-LAs. In those 6 patients (86%) had history of paroxysmal atrial fibrillation before stroke onset. Multivariate logistic regression analysis showed that S-LAs was an independent predictor of LAA thrombus and/or LAA-SEC (odds ratio 1.758, p<0.01). In conclusion, decreased S-LAs was independently associated with LAA dysfunction and thrombus formation in patients with acute ischemic stroke and sinus rhythm at echocardiography Figure 1. Receiver operating characteristics (ROC) curve analysis of LA peak systolic strain for predicting LAA dysfunction.

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Available abstract

It is well known that transesophageal echocardiography (TEE) is useful for evaluating left atrial appendage (LAA) function, but TEE is a semi-invasive procedure. Many clinical studies have shown a close relationship between LAA thrombus formation and left atrial (LA) mechanical remodeling. Left atrial (LA) strain assessed by two-dimensional speckle tracking echocardiography is a new tool to evaluate LA function. However, the association of LA strain and LAA function remains to be fully determined. We performed transthoracic and transesophageal echocardiography in 58 consecutive patients with acute ischemic stroke within 7 days of onset and sinus rhythm at TEE performed (40 males, mean age 71±11 years). Longitudinal LA strain was obtained using two-dimensional speckle tracking imaging at each LA segment, and peak systolic strain (S-LAs) was calculated by averaging the results for each segment. Eight patients had LAA thrombus and/or severe LAA spontaneous echo contrast (LAA-SEC). S-LAs was significantly lower in patients with LAA dysfunction than in those without (34.5±12.5 vs. 15.9±7.2%, P<0.01). S-LAs was significantly correlated with LAA eV (r=0.466, p<0.01). The optimal cut off value of S-LAs for predicting LAA dysfunction was determined for 21% (Figure). In patients with LAA dysfunction, 7 patients had low S-LAs. In those 6 patients (86%) had history of paroxysmal atrial fibrillation before stroke onset. Multivariate logistic regression analysis showed that S-LAs was an independent predictor of LAA thrombus and/or LAA-SEC (odds ratio 1.758, p<0.01). In conclusion, decreased S-LAs was independently associated with LAA dysfunction and thrombus formation in patients with acute ischemic stroke and sinus rhythm at echocardiography Figure 1. Receiver operating characteristics (ROC) curve analysis of LA peak systolic strain for predicting LAA dysfunction.

Key concepts: Medicine, Cardiology, Internal medicine, Sinus rhythm, Atrial fibrillation, Thrombus, Speckle tracking echocardiography, Stroke (engine)

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Decreased left atrial peak systolic strain evaluated by two-dimensional speckle tracking reflects left atrial appendage dysfunction in sinus rhythm patients with acute ischemic stroke — Research Paper | ScholarLens