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May 19, 2026Emergency Medicine Journal0 citations

E(co)-health evolution: comparative life-cycle assessment of the virtual fracture clinic versus conventional inperson follow-up

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FLFlorian T LubNVNicole F M van VlijmenEBEgid M van Bree

Key Points

  • This study assesses the environmental impact of the Virtual Fracture Care pathway compared to conventional follow-up.
  • Conducted a cradle-to-grave life-cycle assessment at a Dutch emergency department.
  • Included data on material use, waste, transport, and energy consumption.
  • Calculated carbon footprints using SimaPro software and the ReCiPe 2016 method.
  • VFC pathway reduced CO₂ emissions by 2.8 kg CO₂-eq per treatment compared to the standard pathway (95% CI 2.1 to 3.9).
  • Annual decrease of 625 kg CO₂-eq observed in 230 patients treated.
  • Key contributors to emissions savings included patient travel (411.7 kg CO₂-eq) and materials (126.5 kg CO₂-eq).

Abstract

Background The Virtual Fracture Care (VFC) method is designed to minimise follow-up visits for trauma patients seen in the emergency department (ED) with non-complex and stable injuries by adopting a risk-sharing model. Given the healthcare sector’s significant carbon footprint, this study aims to assess the environmental impact of VFC-pathway direct discharge with the standard pathway with inpatient follow-up, focusing on the treatment and follow-up of torus/greenstick fractures. Methods A comparative cradle-to-grave life-cycle assessment was conducted at a Dutch ED. Data for material use, waste, packaging, transport, energy consumption, and staff and patient travel are included. Carbon footprints were calculated using SimaPro software with the ReCiPe 2016 method. The study compared the carbon footprints of the VFC pathway and standard pathway, identified key contributors, and performed a sensitivity and uncertainty analysis. Results The VFC pathway resulted in a reduction of 2.8 (95% CI 2.1 to 3.9) kilograms of carbon dioxide equivalent greenhouse gas emissions (kg CO ₂ -eq) per treatment compared with the standard pathway, which equates to an annual decrease of 625 kg CO ₂ -equivalents in 230 patients seen in our hospital. Key contributors to the difference in annual emissions were travel movements (411.7 kg CO ₂ -eq), materials (126.5 kg CO ₂ -eq) and packaging (6.9 kg CO ₂ -eq). Sensitivity analysis revealed that eliminating follow-up visits could result in an annual reduction of 805 kg CO ₂ -eq, if all patients travelled by car. Conclusion The VFC pathway reduces the CO ₂ emission of treating torus/greenstick fractures, primarily by decreasing patient travel, while patient satisfaction and material use do not increase. Broader adoption of a risk-sharing model, that is digitally supported, may reduce environmental impact across healthcare domains.

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Cite This Study

Lub et al. (2026) studied this question.

synapsesocial.com/papers/6a0bfdc7166b51b53d379185https://doi.org/10.1136/emermed-2025-215217
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1The effects of a Virtual Fracture Care review protocol on secondary healthcare utilization in trauma patients requiring semi-acute surgery: a retrospective cohort study2024
  2. 2Telemedicine for sustainable postoperative follow-up: a prospective pilot study evaluating the hybrid life-cycle assessment approach to carbon footprint analysis2024 · 15 citations
  3. 3Evaluating the Effectiveness of Virtual Fracture Clinics in Managing Toe Fractures: Patient Demographics and Outcomes2024
  4. 4757 Rapid Deployment of a Virtual Fracture Clinic (VFC) at a London District General Hospital: Safely Building on a Pragmatic Measure to Bring About Lasting Service Impact2024
  5. 5The Virtual Fracture Clinic Bottleneck: A Single-Centre Service Evaluation of Compliance With British Orthopaedic Association Surgical Timing Standards for Distal Radius Fixation2026