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June 29, 2004Circulation148 citationsOpen Access

Acute Improvement in Global and Regional Left Ventricular Systolic Function After Percutaneous Heart Valve Implantation in Patients With Symptomatic Aortic Stenosis

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FBFabrice BauerHEHélène EltchaninoffCTChristophe Tron

Key Result

Percutaneous heart valve implantation significantly increased left ventricular ejection fraction from 48% at baseline to 57% at 24 hours (P<0.01) in patients with severe aortic stenosis.

Key Points

  • This study aims to assess the effects of percutaneous heart valve implantation on left ventricular function in patients with aortic stenosis.
  • Echocardiography performed before and 24 hours after PHV implantation
  • Measurement of LV volume, ejection fraction, and regional function
  • Analysis of tissue Doppler imaging for wall tissue velocity and strain metrics.
  • Reduction in transaortic mean pressure gradient from 46 mm Hg to 8 mm Hg (P < 0.0001)
  • LV ejection fraction increased from 48% to 57% (P < 0.01)
  • Posterior wall tissue velocity increased from 2.2 cm/s to 4.4 cm/s (P = 0.0003).

Study Design

Type

Observational (n=8)

Structured PICO

Does percutaneous heart valve implantation improve global and regional left ventricular systolic function in patients with severe aortic stenosis?

P
Population
8 patients with severe symptomatic aortic stenosis
I
Intervention
Percutaneous heart valve (PHV) implantation
C
Comparator
Baseline (pre-implantation)
O
Outcome
Changes in left ventricular (LV) volume and LV ejection fraction at 24 hourssurrogate

Percutaneous heart valve implantation in severe aortic stenosis leads to immediate improvements in global and regional left ventricular systolic function at 24 hours.

Main Result

Absolute Event Rate: 57% vs 48%

p-value: p=<0.01

Abstract

Background— The newly developed percutaneous heart valve (PHV) implantation technique decreases transaortic pressure gradient in patients with aortic stenosis. PHV replacement effects on left ventricular (LV) global and regional systolic function are currently unknown. Methods and Results— Eight patients with severe aortic stenosis had 2D echocardiography at baseline and 24 hours after PHV implantation to evaluate changes in LV volume and LV ejection fraction. Regional function, ie, both peak systolic anterior and posterior wall tissue velocity, as well as strain and strain rate imaging, were measured by tissue Doppler imaging from a short-axis view. At 24 hours, a significant reduction in transaortic mean pressure gradient (from 46±15 to 8±3 mm Hg; P <0.0001) was accompanied by an increase in aortic valve area (from 0.59±0.11 to 1.69±0.11 cm 2 ; P <0.0001). LV end-diastolic volume remained unchanged (102±36 to 101±12 mL; P =NS), whereas LV ejection fraction increased (48±18% to 57±12%; P <0.01). Improvement in posterior wall displacement (posterior wall tissue velocity increased from 2.2±0.5 to 4.4±1.0 cm/s −1 ; P =0.0003) and deformation (strain rate imaging increased from 1.0±0.3 to 1.9±0.7 s −1 , P =0.009, and strain increased from 11±5% to 17±9%; P =0.02) were observed. Conclusions— Immediately after PHV replacement, improvement of LV global and regional systolic function was evidenced by tissue Doppler imaging.

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Cite This Study

Bauer et al. (2004) conducted an observational in Severe aortic stenosis (n=8). Percutaneous heart valve (PHV) implantation vs. Baseline (pre-implantation) was evaluated on Left ventricular ejection fraction (p=<0.01). Percutaneous heart valve implantation significantly increased left ventricular ejection fraction from 48% at baseline to 57% at 24 hours (P<0.01) in patients with severe aortic stenosis.

synapsesocial.com/papers/6a0f2a9bf822c924b6bdb7c2https://doi.org/10.1161/01.cir.0000134961.36773.d6
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