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Published on: June 15, 2020
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.
Background:
Heart is frequently involved in Churg-Strauss syndrome (CSS). However, the mechanics of left ventricular (LV) dysfunction in CSS has not been studied.
Objective:
To assess the mechanics of LV function and to characterize the contribution of longitudinal, circumferential and rotational deformation to LV dysfunction in CSS.
Methods:
We enrolled 22 CSS patients (eight males, mean age 43.2 ± 9.5 years) in remission of their disease and 22 sex- and age-matched healthy subjects. All patients underwent conventional and two-dimensional speckle-tracking echocardiography. Global longitudinal, circumferential and rotational deformation parameters were calculated.
Results:
CSS subjects demonstrated lower LV ejection fraction (EF) than controls (56.6 ± 15.0% vs 63.8 ± 3.4%; P < 0.05). When compared to those with LVEF ≥ 50% (n = 14), CSS patients with LVEF < 50% (n = 7) had decreased global peak-systolic longitudinal and circumferential strain/strain rate (all P < 0.001) and tended to have lower global peak-systolic radial strain (P = 0.05). There were no differences between these two subgroups in global peak-systolic radial strain rate and LV twist/torsion. When comparing individual systolic and diastolic parameters early diastolic longitudinal and circumferential strain rate demonstrated the highest correlation with corresponding global longitudinal and circumferential peak-systolic strain/strain rate (r < -0.80, P < 0.001 for all correlations).
Conclusions:
In CSS LV systolic dysfunction strongly correlates with longitudinal and circumferential, but not radial or rotational systolic components, indicating that impaired LV systolic function may result predominantly from impaired contraction of inner and middle, but not outer myocardial fiber layers. The spatial correspondence between systolic and diastolic deformation parameters suggests the similar impact of pathologic process on systolic and diastolic function in CSS.
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