Author:
Bodenes Laetitia,N’Guyen Quang-Thang,Le Mao Raphaël,Ferrière Nicolas,Pateau Victoire,Lellouche François,L’Her Erwan
Abstract
AbstractHeart rate variability (HRV) is a mean to evaluate cardiac effects of autonomic nervous system activity, and a relation between HRV and outcome has been proposed in various types of patients. We attempted to evaluate the best determinants of such variation in survival prediction using a physiological data-warehousing program. Plethysmogram tracings (PPG) were recorded at 75 Hz from the standard monitoring system, for a 2 h period, during the 24 h following ICU admission. Physiological data recording was associated with metadata collection. HRV was derived from PPG in either the temporal and non-linear domains. 540 consecutive patients were recorded. A lower LF/HF, SD2/SD1 ratios and Shannon entropy values on admission were associated with a higher ICU mortality. SpO2/FiO2 ratio and HRV parameters (LF/HF and Shannon entropy) were independent correlated with mortality in the multivariate analysis. Machine-learning using neural network (kNN) enabled to determine a simple decision tree combining the three best determinants (SDNN, Shannon Entropy, SD2/SD1 ratio) of a composite outcome index. HRV measured on admission enables to predict outcome in the ICU or at Day-28, independently of the admission diagnosis, treatment and mechanical ventilation requirement.Trial registration: ClinicalTrials.gov identifier NCT02893462.
Publisher
Springer Science and Business Media LLC
Reference51 articles.
1. Marsac, J. Heart rate variability: a cardiometabolic risk marker with public health implications [article in French]. Bull. Acad. Natl. Med. 197, 175–186 (2013).
2. Servant, D. et al. Heart rate variability. Applications in psychiatry [article in French]. L’Encephale 35, 423–428 (2009).
3. Task Force of the European Society of Cardiology and the North American Society of Pacing and Electrophysiology. Heart rate variability. Standards of measurement, physiological interpretation, and clinical use. Eur. Heart J. 17, 354–381 (1996).
4. Arborelius, M. et al. Hemodynamic changes in man during immersion with the head above water. Aerosp. Med. 43, 592–598 (1972).
5. Lown, B. & Verrier, R. L. Neural activity and ventricular fibrillation. N. Engl. J. Med. 294, 1165–1170 (1976).
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