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December 10, 2007British Journal of Sports Medicine76 citations

Left atrial myocardial function in either physiological or pathological left ventricular hypertrophy: a two-dimensional speckle strain study

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ADAlfredo D’AndreaGCGiuseppe De CoratoRSRaffaella Scarafile

Key Result

Peak systolic myocardial atrial strain assessed by 2DSE was significantly reduced in patients with pathological LVH due to hypertension compared with age-matched athletes and controls (p<0.0001).

Key Points

  • This study aims to examine left atrial myocardial function in physiological and pathological left ventricular hypertrophy.
  • Used two-dimensional strain echocardiography (2DSE) to assess left atrial function.
  • Included 40 patients with hypertension, 45 elite athletes, and 25 healthy controls.
  • Performed standard echocardiography and exercise stress tests.
  • Patients with pathological left ventricular hypertrophy exhibited significantly lower peak systolic strain (p<0.0001) compared to controls and athletes.
  • LA lateral wall systolic strain was a key predictor of exercise capacity (beta = 0.49; p<0.0001).
  • LA active emptying volume and fraction were greater in patients with hypertension compared to athletes.

Study Design

Type

Cross-Sectional (n=110)

Structured PICO

Does two-dimensional strain echocardiography detect differences in left atrial myocardial function between patients with physiological versus pathological left ventricular hypertrophy?

P
Population
110 subjects including 40 patients with arterial hypertension (pathological LVH), 45 age-matched elite athletes >40 years (physiological LVH), and 25 healthy sedentary controls.
I
Intervention
Two-dimensional strain rate imaging (2DSE) of the left atrium
C
Comparator
Comparison between pathological LVH (hypertension), physiological LVH (athletes), and healthy sedentary controls
O
Outcome
Peak systolic myocardial atrial strainsurrogate

Main Result

p-value: p=<0.0001

Abstract

BACKGROUND: Atrial function is an integral part of cardiac function that is often neglected. The presence of left ventricule hypertrophy (LVH) due to arterial hypertension may impair atrial function. However, it has also been suggested that physical training attenuates the age-associated impairment of diastolic filling. This study investigated whether mechanical dysfunction in the left atrium (LA) is present in patients with either physiological or pathological LVH, using two-dimensional strain rate imaging (2D strain echocardiography; 2DSE). METHODS: Standard echocardiography, exercise stress echo and 2DSE of the left atrium were performed in 40 patients with arterial hypertension, 45 age-matched elite athletes (>40 years) and 25 healthy sedentary controls. Atrial longitudinal strain was performed from the apical views for the basal segments of the LA septum, lateral wall and roof. RESULTS: LV mass index and ejection fraction were comparable between patients with either physiological or pathological LVH. Elite athletes showed increased LV end-diastolic diameter, end-diastolic volume and stroke volume, whereas circumferential end-systolic stress was higher in patients with hypertension. LA diameter and maximum volume were increased but similar between the two groups of patients with LVH. LA active emptying volume and fraction were both higher in patients with hypertension. Conversely, peak systolic myocardial atrial strain was significantly reduced in patients with pathological LVH compared with controls and athletes for all the analysed atrial segments (p<0.0001). Using multivariate analysis, LV end-diastolic volume/body surface area (BSA) (beta coefficient 0.52; p<0.0001) and LV mass (beta = 0.48; p<0.001) in athletes emerged as the only independent determinants of LA lateral wall peak systolic strain. In contrast, in patients with hypertension, an independent negative association of LA lateral wall peak systolic strain with both LV mass (beta = -0.42; p<0.001) and circumferential end-systolic stress (beta = -0.43; p<0.001) was found. In addition, in the overall population of patients with LVH, LA lateral wall systolic strain (beta = 0.49; p<0.0001) was a powerful independent predictor of maximum workload during exercise testing. CONCLUSIONS: 2DSE represents a promising, non-invasive, simple and reproducible technique to assess LA myocardial function in patients with either physiological or pathological LVH. LA myocardial deformation is impaired in patients with hypertension compared with age-matched sedentary controls and elite athletes, and is closely associated with functional capacity during effort.

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Cite This Study

D’Andrea et al. (2007) conducted a cross-sectional in Left ventricular hypertrophy (physiological vs pathological) (n=110). Pathological left ventricular hypertrophy (arterial hypertension) vs. Physiological LVH (elite athletes) and healthy sedentary controls was evaluated on Peak systolic myocardial atrial strain (p=<0.0001). Peak systolic myocardial atrial strain assessed by 2DSE was significantly reduced in patients with pathological LVH due to hypertension compared with age-matched athletes and controls (p<0.0001).

synapsesocial.com/papers/6a1934b2f3c200df105808f5https://doi.org/10.1136/bjsm.2007.041210
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