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April 14, 2026Intensive Care Medicine Experimental0 citationsOpen Access

What I talk about when I talk about patient self-inflicted lung injury: an ultrastructural perspective

PCPablo R. CrucesFLFelipe M. LlancalahuénCGCarlos González

Key Points

  • This research aims to characterize patient self-inflicted lung injury at an ultrastructural level using advanced imaging techniques.
  • Induced lung injury in rats through surfactant depletion.
  • After injury, subjected rats to standard oxygen therapy or protective mechanical ventilation for 3 hours.
  • Fixed and removed lungs for scanning electron microscopy analysis.
  • Analyzed images for alveolar wall discontinuities, hemorrhage, and microthrombosis using semi-quantitative scoring.
  • Performed computer-assisted morphometric evaluations to assess lung aeration.
  • Higher frequencies of alveolar wall discontinuities and hemorrhage were observed in the standard oxygen therapy group.
  • Standard oxygen therapy resulted in more microthrombosis compared to mechanical ventilation (MV).
  • Lower lung aeration was noted in the standard oxygen therapy group, as assessed by the aeration/tissue ratio.

Abstract

Abstract Background In preclinical studies, under-assisted respiratory effort has been identified as promoting lung injury, leading to the concept of “ patient self-inflicted lung injury” (P-SILI). We aim to characterize this second hit at the ultrastructural level through scanning electron microscopy. Methods In rats, lung injury was induced through surfactant depletion, followed by 3h of standard oxygen therapy or protective mechanical ventilation (MV). The lungs were fixed and removed to be subsequently scanned using a field emission scanning electron microscope. Images were analyzed using a semi-quantitative approach, scoring ten random alveoli for wall discontinuities and hemorrhage, and five small pulmonary vessels for microthrombosis. Computer-assisted morphometric evaluations were performed to quantify loss of lung aeration. Results The standard oxygen therapy group showed higher frequencies of alveolar wall discontinuities, alveolar hemorrhage, and microthrombosis, compared to the MV group (all p < 0.05). The former also resulted in a lower aeration assessed by the aeration/tissue ratio. Conclusions Alveolar wall fractures suggest that unsupported spontaneous breathing induces stress failure in the lung parenchyma. The fractures were associated with hemorrhage and alveolar collapse, as well as with the formation of microthrombi in small pulmonary vessels. This can be caused by regional deformation phenomena as well as by cyclical lung vascular on–off flow.

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Cite This Study

Cruces et al. (2026) studied this question.

synapsesocial.com/papers/69ddd9e1e195c95cdefd74adhttps://doi.org/10.1186/s40635-026-00897-2
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