Hernandez Andrew M, Chen Anthony F, Ghatpande Omkar, Omary Reed A, Woolen Sean, Jung Youngkyoo, Fananapazir Ghaneh
Department of Radiology, University of California Davis Health, Sacramento, CA.
Building Technologies and Science Center, National Renewable Energy Laboratory, Golden, CO.
J Comput Assist Tomogr. 2025;49(2):191-202. doi: 10.1097/RCT.0000000000001700. Epub 2024 Dec 5.
This review aims to provide valuable insights into how energy consumption in magnetic resonance imaging (MRI) and computed tomography (CT) scanners can be effectively monitored, managed, and reduced, thereby contributing to more sustainable medical imaging practices. Demand for advanced imaging technologies such as MRI and CT scanners continues to increase, and understanding the resultant impact on greenhouse gas emissions requires a thorough evaluation of their energy consumption. This review examines the energy monitoring and consumption characteristics of MRI and CT scanners, highlighting potential approaches for energy savings. An overview of MRI and CT principles, hardware components, and their associated energy consumption is provided. After addressing the technical aspects, the hardware and software requirements essential for accurate energy metering are detailed. Baseline measurements of energy consumption data are then provided as a foundation to understand current usage patterns and identify areas for improvement. Ongoing efforts to reduce energy consumption are categorized into 3 main strategies: operations, scanner design enhancements, and active scanning techniques, including accelerated MRI protocols. Ultimately, we emphasize that achieving sustainability in medical imaging requires collaboration across disciplines. By incorporating eco-friendly design in new imaging equipment, we can reduce the environmental impact, promote sustainability, and set a health care industry standard for a healthier planet.
本综述旨在深入探讨如何有效监测、管理和降低磁共振成像(MRI)和计算机断层扫描(CT)扫描仪的能源消耗,从而推动更可持续的医学成像实践。对MRI和CT扫描仪等先进成像技术的需求持续增长,而要了解其对温室气体排放的影响,就需要全面评估它们的能源消耗。本综述考察了MRI和CT扫描仪的能源监测及消耗特性,着重介绍了节能的潜在方法。文中提供了MRI和CT的原理、硬件组件及其相关能源消耗的概述。在阐述技术方面之后,详细说明了准确计量能源所需的硬件和软件要求。接着给出了能源消耗数据的基线测量结果,作为理解当前使用模式和确定改进领域的基础。当前降低能源消耗的努力主要分为三大策略:操作、扫描仪设计改进以及主动扫描技术,包括加速MRI协议。最后,我们强调医学成像实现可持续发展需要跨学科合作。通过在新成像设备中纳入环保设计,我们可以减少对环境的影响,促进可持续发展,并为更健康的地球树立医疗行业标准。