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September 23, 2025Alimentary Pharmacology & Therapeutics4 citationsOpen Access

Systematic Review: Ultrasound Goes Echo—Decarbonising Inflammatory Bowel Disease Care Through Intestinal Ultrasound

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SMSara MassironiSBSarah BencardinoFFFederica Furfaro

Key Points

  • Intestinal ultrasound generates only 0.5–1.5 kg CO2e per scan, significantly lower than other methods.
  • GI endoscopy, CT, and MRI contribute substantially to greenhouse gas emissions, with endoscopy at 7.8–56.4 kg CO2e.
  • A systematic review of 31 studies assessed the environmental impacts of imaging modalities in IBD care.
  • Adopting intestinal ultrasound may enable more sustainable management of inflammatory bowel disease amidst rising planetary health concerns.

Abstract

ABSTRACT Background Inflammatory bowel disease (IBD) is a chronic, resource‐intensive condition requiring repeated diagnostic assessments. Healthcare contributes ~5% of global greenhouse gas emissions, and key diagnostic tools in IBD—gastrointestinal (GI) endoscopy, computed tomography (CT) and magnetic resonance imaging (MRI)—are associated with substantial environmental impacts. The environmental burden of these diagnostic pathways, however, remains underappreciated. Aim To systematically assess the carbon footprint and environmental impact of diagnostic imaging modalities commonly used in IBD, with particular focus on intestinal ultrasound (IUS) as a sustainable, low‐carbon alternative. Methods A systematic review was conducted according to PRISMA 2020 guidelines. PubMed, Scopus and Embase were searched from inception to May 2025 for studies reporting the environmental impact of diagnostic modalities relevant to IBD care (GI endoscopy, CT, MRI and IUS). Studies providing quantitative or qualitative data on carbon footprint, energy consumption, waste generation or sustainability metrics were included. Data were synthesised narratively. Results Thirty‐one studies were included. GI endoscopy generates approximately 7.8–56.4 kg CO 2 ‐equivalent per procedure, largely driven by transportation, energy use and disposables. CT carries a carbon footprint of 7–10 kg CO 2 e per procedure in direct life cycle assessments, while broader institutional and modelling estimates extend this to ~20 kg CO 2 e depending on throughput, protocol and energy sources. MRI is substantially more energy‐intensive, ranging from 17–22 kg CO 2 e per scan in most studies, and up to 200–300 kg CO 2 e for high‐field (3T) systems when full life cycle impacts are included. In contrast, IUS produces only 0.5–1.5 kg CO 2 e per scan, with minimal energy demand and negligible waste. IUS enables point‐of‐care assessments, reducing patient travel and associated emissions. Conclusion GI endoscopy, CT and MRI are indispensable in IBD care but carry considerable environmental costs. The broader adoption of IUS offers a clinically effective, low‐carbon alternative that can contribute to more sustainable IBD management, aligning with planetary health goals. Trial Registration PROSPERO International Prospective Register of Systematic Reviews: CRD420251088016

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Cite This Study

Massironi et al. (2025) studied this question.

synapsesocial.com/papers/68d4758931b076d99fa6d082https://doi.org/10.1111/apt.70385
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