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心血管磁共振学会关于环境可持续性心血管磁共振的建议。

Society for Cardiovascular Magnetic Resonance recommendations toward environmentally sustainable cardiovascular magnetic resonance.

作者信息

Hanneman Kate, Picano Eugenio, Campbell-Washburn Adrienne E, Zhang Qiang, Browne Lorna, Kozor Rebecca, Battey Thomas, Omary Reed, Saldiva Paulo, Ng Ming, Rockall Andrea, Law Meng, Kim Helen, Lee Yoo Jin, Mills Rebecca, Ntusi Ntobeko, Bucciarelli-Ducci Chiara, Markl Michael

机构信息

Department of Medical Imaging, University of Toronto, Toronto, Ontario, Canada.

University Clinical Center of Serbia, Cardiology Division, University of Belgrade, Serbia.

出版信息

J Cardiovasc Magn Reson. 2025;27(1):101840. doi: 10.1016/j.jocmr.2025.101840. Epub 2025 Jan 29.

Abstract

Delivery of health care, including medical imaging, generates substantial global greenhouse gas emissions. The cardiovascular magnetic resonance (CMR) community has an opportunity to decrease our carbon footprint, mitigate the effects of the climate crisis, and develop resiliency to current and future impacts of climate change. The goal of this document is to review and recommend actions and strategies to allow for CMR operation with improved sustainability, including efficient CMR protocols and CMR imaging workflow strategies for reducing greenhouse gas emissions, energy, and waste, and to decrease reliance on finite resources, including helium and waterbody contamination by gadolinium-based contrast agents. The article also highlights the potential of artificial intelligence and new hardware concepts, such as low-helium and low-field CMR, in achieving these aims. Specific actions include powering down magnetic resonance imaging scanners overnight and when not in use, reducing low-value CMR, and implementing efficient, non-contrast, and abbreviated CMR protocols when feasible. Data on estimated energy and greenhouse gas savings are provided where it is available, and areas of future research are highlighted.

摘要

包括医学成像在内的医疗保健服务会产生大量的全球温室气体排放。心血管磁共振(CMR)领域有机会减少我们的碳足迹,减轻气候危机的影响,并增强对当前和未来气候变化影响的适应能力。本文档的目标是审查并推荐相关行动和策略,以实现更具可持续性的CMR操作,包括高效的CMR协议以及用于减少温室气体排放、能源消耗和废物产生的CMR成像工作流程策略,并减少对有限资源的依赖,如氦气和钆基造影剂对水体的污染。本文还强调了人工智能和新硬件概念(如低氦和低场CMR)在实现这些目标方面的潜力。具体行动包括在夜间及不使用时关闭磁共振成像扫描仪电源、减少低价值的CMR检查,并在可行的情况下实施高效、无对比剂和简化的CMR协议。文中提供了估算的能源和温室气体节省数据,并突出了未来的研究领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d58a/12182813/80809c0bfca9/ga1.jpg

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