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首页> 外文期刊>JCO oncology practice. >Assessing and Reducing Positron Emission Tomography/Computed Tomography Radiotracer Infiltrations: Lessons in Quality Improvement and Sustainability
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Assessing and Reducing Positron Emission Tomography/Computed Tomography Radiotracer Infiltrations: Lessons in Quality Improvement and Sustainability

机译:评估和降低正电子发射断层扫描/计算机断层扫描辐射剂浸润:质量提高和可持续性的课程

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PURPOSE:Accurate administration of radiotracer dose is essential to positron emission tomography (PET) image quality and quantification. Misadministration (infiltration) of the dose can affect PET/computed tomography results and lead to unnecessary or inappropriate treatments and procedures. Quality control efforts ensure accuracy of the administered dose; however, they fail to ensure complete delivery of the dose into the patient's circulation. We used new technology to assess and improve infiltration rates and evaluate sustainability.METHODS:Injection quality was measured, improved, and sustained during our participation in a multicenter quality improvement project using Define, Measure, Analyze, Improve, Control methodology. Five technologists monitored injection quality in the Measure and Improve phases. After seven new technologists joined the team in the Control phase, infiltration rates were recalculated, controlling for technologist- and patient-level correlations, and comparisons were made between these two groups of technologists.RESULTS:In the Measure phase, five technologists monitored 263 injections (13.3% infiltration rate). Nonantecubital fossa injections had a higher probability of infiltration than antecubital fossa injections. After implementing a quality improvement plan (QIP), the same technologists monitored 278 injections in the Improve phase (2.9% infiltration rate). The 78% decrease in infiltration rate was significant (P < .001) as was the decrease in nonantecubital fossa infiltrations (P = .0025). In the Control phase, 12 technologists monitored 1,240 injections (3.1% infiltration rate). The seven new technologists had significantly higher rates of infiltration (P = .017).CONCLUSION:A QIP can significantly improve and sustain injection quality; however, ongoing monitoring is needed as new technologists join the team.
机译:目的:准确的放射性示例剂量对正电子发射断层扫描(PET)图像质量和定量至关重要。剂量不当(浸润)会影响宠物/计算机断层扫描结果,并导致不必要或不适当的治疗和程序。质量控制工作确保了管理剂量的准确性;但是,他们无法确保将剂量完全递送到患者的血液循环中。我们使用新技术来评估和提高渗透率并评估可持续性。方法:注射质量在我们参与我们参与多中心质量改进项目的过程中使用定义,测量,分析,改进,控制方法学。五名技术人员监测了该度量的注射质量并改善了阶段。在七名新技术人员在控制阶段加入团队后,重新计算了渗透率,控制了技术人员和患者水平的相关性,并在这两组技术人员之间进行了比较。验证阶段:在量度阶段,五名技术人员受到监测的263个注射剂。 (浸润率为13.3%)。非肌肌窝注射的浸润可能性高于前牙窝注射。在实施质量改进计划(QIP)之后,相同的技术人员在改善阶段(2.9%的浸润率)监测了278次注射。浸润速率的78%降低(p <.001),而非抗皮质窝浸润的降低也是如此(p = .0025)。在控制阶段,12位技术人员监测了1,240次注射(3.1%的浸润率)。七位新技术人员的渗透率显着较高(p = .017)。结论:QIP可以显着改善和维持注射质量;但是,随着新技术人员加入团队,需要进行持续的监控。

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