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February 12, 2026Journal of Clinical Medicine5 citationsOpen Access

Patient Self-Inflicted Lung Injury in ARDS: From Physiological Concept to Clinical Syndrome

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RMRaffaele MerolaPRPatricia R. M. RoccoCzech Academy of Sciences, Institute of BiophysicsDBDenise BattagliniAzienda Ospedaliera S.Maria

Key Points

  • To explore the consequences of patient-generated breathing efforts in individuals with ARDS and its clinical implications.
  • Assessment of respiratory drive and inspiratory effort in ARDS patients.
  • Evaluation of mechanical stress and regional lung injury.
  • Implementation of targeted interventions to limit injurious breathing efforts.
  • Excessive inspiratory efforts worsen lung injury and histological damage in ARDS.
  • Moderate spontaneous breathing may enhance lung aeration in mild injury cases.
  • Individualized strategies, like positive end-expiratory pressure and sedation, help manage P-SILI.

Abstract

In acute respiratory distress syndrome (ARDS), spontaneous breathing is often encouraged to preserve lung function, yet excessive patient-generated inspiratory effort can paradoxically worsen injury, a phenomenon termed patient self-inflicted lung injury (P-SILI). In mechanically heterogeneous lungs, uncontrolled effort amplifies regional stress, strain, and mechanical power, driving alveolar overdistension, cyclic recruitment–derecruitment, pendelluft, and inflammation. Cardiovascular consequences include elevated right ventricular afterload, impaired left ventricular filling, and exacerbation of pulmonary edema. While moderate spontaneous breathing may improve aeration in mild injury, evidence shows that vigorous effort in severe ARDS accelerates histological damage and regional lung stress. Early bedside assessment of respiratory drive and inspiratory effort identifies patients at highest risk, enabling targeted interventions. Strategies to preserve protective spontaneous breathing while limiting injurious effort include individualized positive end-expiratory pressure, titrated sedation, prone positioning, and short-term neuromuscular blockade. By integrating continuous physiological monitoring with personalized ventilatory management, clinicians can mitigate P-SILI, protect the diaphragm, and optimize outcomes. Future studies are needed to test physiology-guided interventions and establish evidence-based approaches to safely harness the benefits of spontaneous breathing in ARDS.

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Cite This Study

Merola et al. (2026) studied this question.

synapsesocial.com/papers/698d6f0d5be6419ac0d550c5https://doi.org/10.3390/jcm15041412
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