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剂量跟踪软件:CT 程序中剂量学数据的回顾性分析。

Dose-Tracking Software: A Retrospective Analysis of Dosimetric Data in CT Procedures.

机构信息

School of Specialization in Medical Physics, University of Naples Federico II, Naples.

U.O.S.D. Health Physics, AORN Cardarelli Hospital, Naples.

出版信息

Health Phys. 2022 Apr 1;122(4):548-555. doi: 10.1097/HP.0000000000001524.

Abstract

The increasing use of ionizing radiation in healthcare is causing growing alarm about radiation protection of patients and the doses they receive during procedures. Radiation dose assessment for patients in radiodiagnostic procedures is the subject of interest in view of the recent Italian D.Lgs 31 July 2020, n. 101 (Decreto Legislativo 31 luglio 2020, n. 101) and one of its most important focuses is the prescription to provide patient exposure information as an integral part of the examination report. Dose monitoring systems are therefore essential for the collection of the dosimetric data. In order to analyse potential and critical issues of these software, different systems, adopted at the Antonio Cardarelli Hospital in Naples, were employed. Data extracted from the DoseWatch software (GE Healthcare) and Gray Detector (EL.CO. S.r.l. Healthcare Solutions, Italy) and relating to several protocols adopted for computed tomography (CT), were retrospectively analysed for the purpose of identifying critical issues in the data acquisition and recording phase, comparing with Italian nationwide diagnostic reference levels (DRLs), as provided for in regulatory provisions for radiation safety. Multiphase examinations were also included in this study. Once the distributions of volumetric CT Dose Index (CTDIvol) and dose-length product (DLP) were determined for each acquisition phase and total DLP (DLPtot) for each examination, the 25th, 50th and 75th percentiles were calculated for each distribution and then compared with the relevant Italian nationwide DRLs. In addition, to improve protocol optimization and dose reduction the magnitude of the CT acquisition settings chosen in each procedure was evaluated. In conclusion, these systems allow accurate analysis of radiation dose according to equipment and protocol over time. For the application of optimization measures, a constant use of the dose tracking software is required, which can be translated into actions on scan parameters and prospective data analysis.

摘要

医疗保健中电离辐射的使用不断增加,这引起了人们对患者辐射防护以及在医疗程序中接受的辐射剂量的日益关注。鉴于最近的意大利 2020 年 7 月 31 日第 101 号法令(D.Lgs 31 luglio 2020,n. 101),放射诊断程序中患者的辐射剂量评估成为关注的主题,该法令的一个重要重点是规定将患者暴露信息作为检查报告的一个组成部分提供。因此,剂量监测系统对于收集剂量数据至关重要。为了分析这些软件的潜在和关键问题,在那不勒斯的安东尼奥·卡达雷利医院采用了不同的系统。从 DoseWatch 软件(GE Healthcare)和 Gray Detector(EL.CO. S.r.l. Healthcare Solutions,意大利)提取与用于计算机断层扫描(CT)的几个协议相关的数据,目的是在数据采集和记录阶段确定关键问题,然后与意大利全国性诊断参考水平(DRLs)进行比较,这是辐射安全法规规定的。本研究还包括多期检查。一旦为每个采集阶段确定了容积 CT 剂量指数(CTDIvol)和剂量长度乘积(DLP)的分布,以及每个检查的总 DLP(DLPtot),则为每个分布计算第 25、50 和 75 百分位数,然后将其与相关的意大利全国性 DRLs 进行比较。此外,为了改善协议优化和剂量减少,评估了每个程序中选择的 CT 采集设置的幅度。总之,这些系统允许根据设备和协议随时间对辐射剂量进行准确分析。为了应用优化措施,需要经常使用剂量跟踪软件,可以将其转化为扫描参数和前瞻性数据分析的操作。

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