1EPS Sistemas embebidos y sistemas inteligentes para sistemas industriales
Ámbito de investigación
Oslo University Hospital
Oslo, NoruegaPublicaciones en colaboración con investigadores/as de Oslo University Hospital (17)
2019
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A Machine Learning Shock Decision Algorithm for Use During Piston-Driven Chest Compressions
IEEE Transactions on Biomedical Engineering, Vol. 66, Núm. 6, pp. 1752-1760
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A Multistage Algorithm for ECG Rhythm Analysis during Piston-Driven Mechanical Chest Compressions
IEEE Transactions on Biomedical Engineering, Vol. 66, Núm. 1, pp. 263-272
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Mixed convolutional and long short-term memory network for the detection of lethal ventricular arrhythmia
PLoS ONE, Vol. 14, Núm. 5
2018
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An Accurate Shock Advise Algorithm for Use during Piston-Driven Chest Compressions
Computing in Cardiology
2017
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Removing piston-driven mechanical chest compression artefacts from the ECG
Computing in Cardiology
2016
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Filtering mechanical chest compression artefacts from out-of-hospital cardiac arrest data
Resuscitation, Vol. 98, pp. 41-47
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Machine learning techniques for the detection of shockable rhythms in automated external defibrillators
PLoS ONE, Vol. 11, Núm. 7
2015
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Chest compression rate feedback based on transthoracic impedance
Resuscitation, Vol. 93, pp. 82-88
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Fully automatic rhythm analysis during chest compression pauses
Resuscitation, Vol. 89, Núm. C, pp. 25-30
2014
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A reliable method for rhythm analysis during cardiopulmonary resuscitation
BioMed Research International, Vol. 2014
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Filtering chest compression artifacts improves the performance of VF-detection parameters
Computing in Cardiology
2013
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A new algorithm to diagnose during chest compressions: Effect on cardiopulmonary resuscitation delivery
Computing in Cardiology
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A simple impedance-based method for ventilation detection during cardiopulmonary resuscitation
Computing in Cardiology
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Feasibility of automated rhythm assessment in chest compression pauses during cardiopulmonary resuscitation
Resuscitation, Vol. 84, Núm. 9, pp. 1223-1228
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Probabilistic classification approaches for cardiac arrest rhythm interpretation during resuscitation
Computing in Cardiology
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Reliable extraction of the circulation component in the thoracic impedance measured by defibrillation pads
Resuscitation, Vol. 84, Núm. 10, pp. 1345-1352
2012
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Suppression of the cardiopulmonary resuscitation artefacts using the instantaneous chest compression rate extracted from the thoracic impedance
Resuscitation, Vol. 83, Núm. 6, pp. 692-698