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Updated: May 7, 2026

Surfactant Depletion Combined with Injurious Ventilation Results in a Reproducible Model of the Acute Respiratory Distress Syndrome ARDS
Published on: April 7, 2021
Early changes of lung mechanics after positive end-expiratory pressure reduction in acute respiratory distress
Shinshu Katayama1,2, Ken Tonai1, Hisashi Imahase1
1Division of Intensive Care, Department of Anesthesiology and Intensive Care Medicine, Jichi Medical University School of Medicine, Shimotsuke, Tochigi, Japan.
Rationale:
Positive end-expiratory pressure (PEEP) balances recruitment against over-inflation in acute respiratory distress syndrome (ARDS). The early response to a PEEP step-down remains under-characterized. Four-dimensional computed tomography (4D-CT) can quantify within-breath mechanics with anatomy-specific resolution.
Objectives:
Using 4D-CT to characterize the early (3-5 minutes) effects of PEEP step-down (15 to 5 cmH2O) on tidal recruitment and over-inflation in ARDS patients.
Methods:
In a prospective, single-center, physiological study, 40 patients with stabilized ARDS (77.5% with PaO2/FIO2 ≥150, median normalized respiratory system compliance 0.78 mL/cmH2O/kg) received lung-protective volume-controlled ventilation with median PEEP of 8 cmH2O. 4D-CT was obtained at PEEP 15 cmH2O and 3-5 min after a PEEP step-down to 5 cmH2O. We quantified tidal recruitment (-200 to +100 HU) and over-inflation (-1000 to -901 HU).
Measurements And Main Results:
Tidal recruitment was low at high PEEP and minimally increased at low PEEP, from 1.15% to 1.84% of expiratory tissue weight (P < .001). End-inspiratory over-inflation decreased from 11.9% to 5.2% of end-inspiratory lung volume (P < .001), and tidal over-inflation decreased from 42.5% to 18.3% of tidal volume (P < .001). End-expiratory lung volume (EELV) substantially decreased (median -787 mL, 95% CI -952 to -743 mL, P < .001), and the volume loss exceeded the passive elastic prediction, indicating substantial alveolar derecruitment. In exploratory analyses, the recruitment-to-inflation ratio did not modify the tidal recruitment response.
Conclusions:
At 3-5 minutes after a PEEP step-down from 15 to 5 cmH2O, 4D-CT showed large EELV loss, substantial alveolar derecruitment, and reduced over-inflation, while tidal recruitment slightly increased and remained low. These results are compatible with a condition in which alveolar units prone to closure respond by closing and remaining closed.
Trial Registration:
UMIN000049583.
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