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首页> 外文期刊>International journal of health care quality assurance >Environmental impact reduction as a new dimension for quality measurement of healthcare services The case of magnetic resonance imaging
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Environmental impact reduction as a new dimension for quality measurement of healthcare services The case of magnetic resonance imaging

机译:减少环境影响是医疗服务质量测量的新维度磁共振成像

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Purpose - The purpose of this paper is to provide a detailed accounting of energy and materials consumed during magnetic resonance imaging (MRI). Design/methodology/approach - The first and second stages of ISO standard (ISO 14040:2006 and ISO 14044:2006) were followed to develop life cycle inventory (LCI). The LCI data collection took the form of observations, time studies, real-time metered power consumption, review of imaging department scheduling records and review of technical manuals and literature. Findings - The carbon footprint of the entire MRI service on a per-patient basis was measured at 22.4 kg CO_2eq. The in-hospital energy use (process energy) for performing MRI is 29 kWh per patient for the MRI machine, ancillary devices and light fixtures, while the out-of-hospital energy consumption is approximately 260 percent greater than the process energy, measured at 75 kWh per patient related to fuel for generation and transmission of electricity for the hospital, plus energy to manufacture disposable, consumable and reusable products. The actual MRI and standby energy that produces the MRI images is only about 38 percent of the total life cycle energy. Research limitations/implications - The focus on methods and proof-of-concept meant that only one facility and one type of imaging device technology were used to reach the conclusions. Based on the similar studies related to other imaging devices, the provided transparent data can be generalized to other healthcare facilities with few adjustments to utilization ratios, the share of the exam types, and the standby power of the facilities' imaging devices. Practical implications - The transparent detailed life cycle approach allows the data from this study to be used by healthcare administrators to explore the hidden public health impact of the radiology department and to set goals for carbon footprint reductions of healthcare organizations by focusing on alternative imaging modalities. Moreover, the presented approach in quantifying healthcare services' environmental impact can be replicated to provide measurable data on departmental quality improvement initiatives and to be used in hospitals' quality management systems. Originality/value - No other research has been published on the life cycle assessment of MRI. The share of outside hospital indirect environmental impact of MRI services is a previously undocumented impact of the physician's order for an internal image.
机译:目的-本文的目的是详细介绍磁共振成像(MRI)期间消耗的能量和材料。设计/方法/方法-遵循ISO标准的第一阶段和第二阶段(ISO 14040:2006和ISO 14044:2006)来制定生命周期清单(LCI)。 LCI数据收集采取观察,时间研究,实时计量功耗,审查成像部门计划记录以及审查技术手册和文献的形式。发现-每位患者整个MRI服务的碳足迹为22.4 kg CO_2eq。对于MRI机器,辅助设备和照明设备,执行MRI的医院内能耗(过程能量)为每位患者29 kWh,而医院外能耗比过程能量高260%(按每位患者75千瓦时,与用于医院发电和输电的燃料有关,另外还有制造一次性,可消耗和可重复使用产品的能源。产生MRI图像的实际MRI和待机能量仅占整个生命周期能量的38%。研究的局限性/意义-专注于方法和概念验证意味着仅使用一种设备和一种成像设备技术即可得出结论。基于与其他成像设备相关的类似研究,所提供的透明数据可以在不对利用率,检查类型所占份额以及设备成像设备的待机功率进行少量调整的情况下,推广到其他医疗机构。实际意义-透明的详细生命周期方法允许医疗管理人员使用此研究中的数据来探索放射科对公共卫生的潜在影响,并通过关注替代成像方式来设定医疗机构减少碳足迹的目标。此外,可以复制提出的量化医疗服务对环境的影响的方法,以提供有关部门质量改进计划的可测量数据,并用于医院的质量管理系统。原创性/价值-尚未发表有关MRI生命周期评估的其他研究。 MRI服务在外部医院间接环境影响中所占的份额是医生订购内部图像之前未记录的影响。

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