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May 19, 2007Echocardiography54 citationsOpen Access

Cardiac Resynchronization Therapy: Variations in Echo‐Guided Optimized Atrioventricular and Interventricular Delays During Follow‐Up

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CVCinzia ValzaniaMBMauro BiffiCMCristian Martignani

Key Result

Echocardiographic optimization of AV and VV delays in CRT patients showed broad intraindividual variability, with VV delay variations ≥40 ms observed in 57% of tested patients at 12 months.

Study Design

Type

Cohort (n=37)

Structured PICO

Does serial echocardiographic optimization of AV and VV delays improve forward stroke volume in heart failure patients with CRT?

P
Population
37 consecutive heart failure patients who received CRT device implantation, followed for up to 12 months.
E
Exposure
Doppler echocardiographic optimization of atrioventricular (AV) and interventricular (VV) delay within 48 hours of implantation, at 6 months, and at 12 months
C
Comparator
Previous assessments (intraindividual comparison over time)
O
Outcome
Variations in optimized AV and VV delays during long-term follow-upsurrogate

Serial echocardiographic optimization of AV and VV delays in CRT patients reveals significant intraindividual variability over time and improves forward stroke volume compared to static programming.

Abstract

BACKGROUND: Relatively few data are available on long-term echocardiographic optimization of atrioventricular (AV) and interventricular (VV) delay programming in cardiac resynchronization therapy (CRT). We assessed variations in optimized AV and VV delays during long-term follow-up. METHODS: Thirty-seven consecutive heart failure patients received Doppler echocardiographic optimization of AV and VV delay within 48 hours from CRT device implantation, at 6 months and at 12 months (the last for the first enrolled 14 patients). RESULTS: After implantation, median optimized AV delay was 100 ms (range, 45 ms); VV optimization led to simultaneous biventricular activation in 4 patients, left ventricular preactivation in 17 patients and right ventricular preactivation in 16 patients. At 12 months median AV delay decreased to 85 ms (23 ms) (P or =40 ms were observed in 41% of the patients at 6 months and in 57% of the tested patients at 12 months. A nonconcordance (by Kappa test) of optimized VV delays was found between each new assessment and the previous one. VV delay optimization was associated with significant (P < 0.001) increases in aortic velocity time integral both at baseline and during follow-up. CONCLUSIONS: Echocardiographic optimization of AV and VV delay is associated with broad intraindividual variability during follow-up. A new assessment of optimized VV delays during long-term follow-up reveals a nonconcordance with previous values and provides increases in forward stroke volume.

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Cite This Study

Valzania et al. (2007) conducted a cohort in heart failure (n=37). Doppler echocardiographic optimization of AV and VV delay vs. baseline/previous assessment was evaluated on Variations in optimized AV and VV delays during long-term follow-up. Echocardiographic optimization of AV and VV delays in CRT patients showed broad intraindividual variability, with VV delay variations ≥40 ms observed in 57% of tested patients at 12 months.

synapsesocial.com/papers/6a6a44afba3b67e10e44a71chttps://doi.org/10.1111/j.1540-8175.2007.00491.x
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