The mechanics of left ventricular dysfunction in patients with Churg-Strauss syndrome

Tomasz Miszalski-Jamka1, Wojciech Szczeklik, Krzysztof Nycz

  • 1Department of Internal Medicine, Jagiellonian University Medical College, Kraków, Poland. miszalt@mp.pl

Insights

Churg-Strauss syndrome (CSS) impairs left ventricular (LV) function, particularly longitudinal and circumferential mechanics. This dysfunction impacts inner and middle myocardial layers, affecting both systolic and diastolic performance.

Area of Science:

  • Cardiology
  • Cardiovascular Imaging
  • Rheumatology

Background:

  • Churg-Strauss syndrome (CSS) frequently involves cardiac complications, specifically affecting the left ventricle (LV).
  • The precise mechanics underlying LV dysfunction in CSS remain understudied.

Purpose of the Study:

  • To quantitatively assess LV mechanics in CSS patients.
  • To determine the contribution of longitudinal, circumferential, and rotational deformations to LV dysfunction in CSS.

Main Methods:

  • Conventional and 2D speckle-tracking echocardiography were performed on 22 CSS patients in remission and 22 healthy controls.
  • Global longitudinal, circumferential, and rotational deformation parameters were calculated for all participants.

Main Results:

  • CSS patients exhibited significantly lower LV ejection fraction (EF) compared to controls.
  • Reduced global peak-systolic longitudinal and circumferential strain/strain rate were observed in CSS patients, particularly those with LVEF < 50%.
  • Early diastolic strain rates strongly correlated with peak-systolic strain/strain rates, indicating similar pathological impacts on systolic and diastolic function.

Conclusions:

  • LV systolic dysfunction in CSS is primarily linked to impaired longitudinal and circumferential myocardial contraction, not radial or rotational components.
  • The findings suggest that the pathology in CSS affects inner and middle myocardial layers more than outer layers.
  • A strong correlation between systolic and diastolic deformation parameters implies a similar impact of the disease process on both systolic and diastolic function.
Abstract

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