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Patient-ventilator asynchrony affects pulse pressure variation prediction of fluid responsiveness

  • Antonio Messina
  • , Davide Colombo
  • , Gianmaria Cammarota
  • , Marta De Lucia
  • , Maurizio Cecconi
  • , Massimo Antonelli
  • , Francesco Della Corte
  • , Paolo Navalesi

Research output: Contribution to journalArticlepeer-review

Abstract

Purpose: During partial ventilatory support, pulse pressure variation (PPV) fails to adequately predict fluid responsiveness. This prospective study aims to investigate whether patient-ventilator asynchrony affects PPV prediction of fluid responsiveness during pressure support ventilation (PSV). Materials and methods: This is an observational physiological study evaluating the response to a 500-mL fluid challenge in 54 patients receiving PSV, 27 without (Synch) and 27 with asynchronies (Asynch), as assessed by visual inspection of ventilator waveforms by 2 skilled blinded physicians. Results: The area under the curve was 0.71 (confidence interval, 0.57-0.83) for the overall population, 0.86 (confidence interval, 0.68-0.96) in the Synch group, and 0.53 (confidence interval, 0.33-0.73) in the Asynch group (P = .018). Sensitivity and specificity of PPV were 78% and 89% in the Synch group and 36% and 46% in the Asynch group. Logistic regression showed that the PPV prediction was influenced by patient-ventilator asynchrony (odds ratio, 8.8 [2.0-38.0]; P < .003). Of the 27 patients without asynchronies, 12 had a tidal volume greater than or equal to 8 mL/kg; in this subgroup, the rate of correct classification was 100%. Conclusions: Patient-ventilator asynchrony affects PPV performance during partial ventilatory support influencing its efficacy in predicting fluid responsiveness.

Original languageEnglish
Pages (from-to)1067-1071
Number of pages5
JournalJournal of Critical Care
Volume30
Issue number5
DOIs
Publication statusPublished - 1 Oct 2015

Keywords

  • Fluid responsiveness
  • Heart-lung interaction
  • Patient-ventilator asynchrony
  • Pressure support ventilation
  • Pulse pressure variation

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