Elucidating the fuzziness in physician decision making in ARDS
DB Bernstein, B Nguyen, GB Allen… - Journal of clinical …, 2013 - Springer
Journal of clinical monitoring and computing, 2013•Springer
The current standard of care for patients suffering from acute respiratory distress syndrome
(ARDS) is ventilation with a tidal volume of 6 ml/kg predicted body weight (PBW), but
variability remains in the tidal volumes that are actually used. This study aims to identify
patient scenarios for which there is discordance between physicians in choice of tidal
volume and positive end-expiratory pressure (PEEP) in ARDS patients. We developed an
algorithm based on fuzzy logic for encapsulating the expertise of individual physicians …
(ARDS) is ventilation with a tidal volume of 6 ml/kg predicted body weight (PBW), but
variability remains in the tidal volumes that are actually used. This study aims to identify
patient scenarios for which there is discordance between physicians in choice of tidal
volume and positive end-expiratory pressure (PEEP) in ARDS patients. We developed an
algorithm based on fuzzy logic for encapsulating the expertise of individual physicians …
Abstract
The current standard of care for patients suffering from acute respiratory distress syndrome (ARDS) is ventilation with a tidal volume of 6 ml/kg predicted body weight (PBW), but variability remains in the tidal volumes that are actually used. This study aims to identify patient scenarios for which there is discordance between physicians in choice of tidal volume and positive end-expiratory pressure (PEEP) in ARDS patients. We developed an algorithm based on fuzzy logic for encapsulating the expertise of individual physicians regarding their use of tidal volume and PEEP in ARDS patients. The algorithm uses three input measurements: (1) peak airway pressure (PAP), (2) PEEP, and (3) arterial oxygen saturation (SaO2). It then generates two output parameters: (1) the deviation of tidal volume from 6 ml/kg PBW, and (2) the change in PEEP from its current value. We captured 6 realizations of intensivist expertise in this algorithm and assessed their degree of concordance using a Monte Carlo simulation. Variability in the tidal volume recommended by the algorithm increased for PAP > 30 cmH2O and PEEP > 5 cmH2O. Tidal volume variability decreased for SaO2 > 90 %. Variability in the recommended change in PEEP increased for PEEP > 5 cmH2O and for SaO2 near 90 %. Intensivists vary in their management of ARDS patients when peak airway pressures and PEEP are high, suggesting that the current goal of 6 ml/kg PBW may need to be revisited under these conditions.
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