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The Importance of Quality in Ventilation–Perfusion Imaging

机译:通风灌注成像质量的重要性

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As the health care environment continues to change and morph into a system focusing on increased quality and evidence-based outcomes, nuclear medicine technologists must be reminded that they play a critical role in achieving high-quality, interpretable images used to drive patient care, treatment, and best possible outcomes. A survey performed by the Quality Committee of the Society of Nuclear Medicine and Molecular Imaging Technologist Section demonstrated that a clear knowledge gap exists among technologists regarding their understanding of quality, how it is measured, and how it should be achieved by all practicing technologists regardless of role and education level. Understanding of these areas within health care, in conjunction with the growing emphasis on evidence-based outcomes, quality measures, and patient satisfaction, will ultimately elevate the role of nuclear medicine technologists today and into the future. The nuclear medicine role now requires technologists to demonstrate patient assessment skills, practice safety procedures with regard to staff and patients, provide patient education and instruction, and provide physicians with information to assist with the interpretation and outcome of the study. In addition, the technologist must be able to evaluate images by performing technical analysis, knowing the demonstrated anatomy and pathophysiology, and assessing overall quality. Technologists must also be able to triage and understand the disease processes being evaluated and how nuclear medicine diagnostic studies may drive care and treatment. Therefore, it is imperative that nuclear medicine technologists understand their role in the achievement of a high-quality, interpretable study by applying quality principles and understanding and using imaging techniques beyond just basic protocols for every type of disease or system being imaged. This article focuses on quality considerations related to ventilation–perfusion imaging. It provides insight on appropriate imaging techniques and protocols, true imaging variants and tracer distributions versus artifacts that may result in a lower-quality or misinterpreted study, and the use of SPECT and SPECT/CT as an alternative providing a high-quality, interpretable study with better diagnostic accuracy and fewer nondiagnostic procedures than historical planar imaging.
机译:随着医疗保健环境的不断变化和演变成注重质量提高和基于证据的结果的系统,必须提醒核医学技术人员,他们在获得用于驱动患者护理,治疗的高质量,可解释图像方面起着至关重要的作用。 ,并获得最佳结果。核医学和分子影像技术专家小组质量委员会进行的一项调查表明,技术专家之间存在着明显的知识差距,即他们对质量的理解,测量方法以及所有实践技术人员应如何实现,无论角色和教育水平。对医疗保健中这些领域的了解,再加上对基于证据的结果,质量测量和患者满意度的日益重视,最终将提升当今和未来核医学技术人员的作用。现在,核医学的作用要求技术人员展示患者评估技能,对医护人员和患者实施安全程序,提供患者教育和指导,并向医生提供信息以协助研究的解释和结果。此外,技术人员必须能够通过执行技术分析,了解所展示的解剖结构和病理生理以及评估整体质量来评估图像。技术人员还必须能够分类和了解正在评估的疾病过程以及核医学诊断研究如何推动护理和治疗。因此,当务之急是,核医学技术人员通过应用质量原则,理解并使用除基本规程之外的每种成像疾病或系统的成像技术,了解他们在实现高质量,可解释研究中所扮演的角色。本文重点关注与通气-灌注成像相关的质量考虑。它提供了有关适当的成像技术和协议的见解,真正的成像变体和示踪剂分布与可能导​​致较低质量或误解研究的伪像,以及使用SPECT和SPECT / CT作为提供高质量,可解释研究的替代方法与历史平面成像相比,具有更高的诊断准确性和更少的非诊断程序。

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