ArticleCritical care (London, England)2026
Rapid sequence versus early surgical stabilization of severe chest wall injuries: a propensity score-matched analysis from a multicenter trauma registry.
Article in Critical care (London, England), 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 3 papers.
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3 citing papers in PubMed.
- Individualized physiological readiness over an admission-time denominator - a reply to comments on rapid sequence versus early surgical stabilization of severe chest wall injuries.Critical care (London, England) · 2026Article
- Beyond admission day: operative intent and physiological readiness in rapid chest wall reconstruction.Critical care (London, England) · 2026Article
- Chest wall reconstruction timing needs an admission-time denominator.Critical care (London, England) · 2026Article
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Abstract
backgroundThe optimal timing for post traumatic Chest Wall Reconstruction (CWR) in severely injured / polytraumatized patients with severe chest wall instability remains a subject of debate. While early surgery within 72 h is associated with improved outcomes, the efficacy and safety of an even earlier "rapid sequence" approach on the day of admission are unclear. This study aims to compare outcomes of severely injured patients undergoing rapid sequence surgery (Day 0) versus early surgery (Days 1-3).
methodsA retrospective analysis was conducted using data from the TraumaRegister DGU
resultsFrom an initial cohort of 34,659 patients with severe chest wall injuries, 2,498 operatively treated patients with a known date of surgery were analyzed. 1,168 (46.8%) underwent rapid sequence surgery (Day 0) and 567 (22.7%) underwent early surgery (Days 1-3). Before matching, the Rapid Sequence group had a higher ISS (27.7 vs. 26.0), a higher incidence of severe head trauma (14.4% vs. 9.2%), and significantly higher mortality (8.4% vs. 4.1%). PSM yielded 500 matched pairs. Despite matching, the Rapid Sequence group retained a higher baseline injury burden (mean ISS: 28.1 vs. 26.2; mortality prognosis (Revised Injury Severity Classification, Version III (RISC III) Score): 16.2% vs. 10.7%). The primary outcome showed a nearly threefold higher mortality rate in the Rapid Sequence group (10.6% vs. 3.6%; p < .001). Rates of sepsis (14.6% vs. 12.0%) and MOF (33.6% vs. 28.3%) were also higher in the rapid group, though not statistically significant.
conclusionIn this large registry analysis, rapid sequence CWR on the day of admission identified a distinct subgroup of patients with more severe concomitant injuries and higher baseline risk. The higher mortality in this group likely reflects residual confounding by indication and survivorship bias, rather than a detrimental effect of rapid surgery per se. This suggests that the decision for immediate surgery is likely driven by life-threatening concomitant injuries not fully captured in the matching model, identifying a patient population with an intrinsically higher risk of death. Our findings therefore do not justify a blanket Day-0-for-all strategy, but are consistent with the broader literature suggesting that CWR performed within 72 h is beneficial when timing is individualized to overall injury severity and physiological stability.
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