Key result
Intrathoracic impedance correlates with NT-proBNP and mitral E-wave deceleration time in chronic heart failure.
Why the study?
The correlation between intrathoracic impedance and established markers of heart failure decompensation such as NT-proBNP and echo-Doppler transmitral flow indexes was not well defined.
Does intrathoracic impedance correlate with NT-proBNP and echo-Doppler transmitral flow indexes in chronic heart failure patients?
Observational (n=111)
Yes
Does intrathoracic impedance correlate with NT-proBNP and echo-Doppler transmitral flow indexes in chronic heart failure patients?
p-value: p=0.013
A decrease in intrathoracic impedance correlates with increased NT-proBNP and altered diastolic filling, supporting its physiologic basis as an early marker of heart failure decompensation.
Supports physiologic basis of impedance in chronic HF; leaves open monitoring utility pending prospective trials.
BACKGROUND: Increased plasma levels of amino-terminal fraction of brain natriuretic peptide (NT-proBNP) and alterations of diastolic filling as described by Doppler transmitral flow pattern are well-known markers of decompensated heart failure (HF). Recently, some implantable defibrillators have allowed monitoring of intrathoracic impedance, which is related to lung water content, potentially indicating HF deterioration. The aim of this study was to assess the correlation between intrathoracic impedance and NT-proBNP and echo-Doppler transmitral flow indexes. METHODS: Data were collected from 111 HF patients, in six Italian centers. All patients were on optimal medical therapy. Device diagnostics, echographic data, NT-proBNP determination, and clinical status as assessed by the Heart Failure Score (HFS) were registered at baseline, at bimonthly visits, and at unscheduled examinations due to HF decompensation or device alerts. RESULTS: Over a median follow-up of 413 days, 955 examinations were performed. Intrathoracic impedance was significantly correlated with NT-proBNP (P = 0.013) and with mitral E-wave deceleration time (DtE) (P = 0.017), but not with HFS. At the time of confirmed alert events, NT-proBNP was significantly higher than during confirmed nonalert event examinations; DtE did not differ, whereas impedance was significantly lower. CONCLUSION: A decrease in intrathoracic impedance is inversely correlated with NT-proBNP and directly correlated with DtE. Intrathoracic impedance monitoring therefore has the physiologic basis for being a useful tool to identify early HF decompensation.
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Tomasi et al. (2010) conducted an observational in Chronic Heart Failure (n=111). Intrathoracic impedance was evaluated on Correlation between intrathoracic impedance and NT-proBNP and echo-Doppler transmitral flow indexes (p=0.013). Intrathoracic impedance was significantly correlated with NT-proBNP (P=0.013) and mitral E-wave deceleration time (P=0.017) in patients with chronic heart failure.
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