Department of Diagnostic and Interventional Radiology and Neuroradiology, University Hospital Essen, Hufelandstraße 55, D-45122 Essen, Germany.
Acad Radiol. 2013 Jun;20(6):721-30. doi: 10.1016/j.acra.2013.01.004. Epub 2013 Mar 7.
Workflow efficiency and workload of radiological technologists (RTs) were compared in head examinations performed with two 1.5 T magnetic resonance (MR) scanners equipped with or without an automated user interface called "day optimizing throughput" (Dot) workflow engine.
Thirty-four patients with known intracranial pathology were examined with a 1.5 T MR scanner with Dot workflow engine (Siemens MAGNETOM Aera) and with a 1.5 T MR scanner with conventional user interface (Siemens MAGNETOM Avanto) using four standardized examination protocols. The elapsed time for all necessary work steps, which were performed by 11 RTs within the total examination time, was compared for each examination at both MR scanners. The RTs evaluated the user-friendliness of both scanners by a questionnaire. Normality of distribution was checked for all continuous variables by use of the Shapiro-Wilk test. Normally distributed variables were analyzed by Student's paired t-test, otherwise Wilcoxon signed-rank test was used to compare means.
Total examination time of MR examinations performed with Dot engine was reduced from 24:53 to 20:01 minutes (P < .001) and the necessary RT intervention decreased by 61% (P < .001). The Dot engine's automated choice of MR protocols was significantly better assessed by the RTs than the conventional user interface (P = .001).
According to this preliminary study, the Dot workflow engine is a time-saving user assistance software, which decreases the RTs' effort significantly and may help to automate neuroradiological examinations for a higher workflow efficiency.
比较了配备或不配备称为“日常优化吞吐量”(Dot)工作流程引擎的自动化用户界面的两台 1.5 T 磁共振(MR)扫描仪进行头部检查时的放射技师(RT)工作流程效率和工作量。
对 34 例已知颅内病变的患者进行了检查,使用配备 Dot 工作流程引擎的 1.5 T MR 扫描仪(西门子 MAGNETOM Aera)和配备传统用户界面的 1.5 T MR 扫描仪(西门子 MAGNETOM Avanto),使用了四个标准化的检查协议。在两台 MR 扫描仪上,对所有必要的工作步骤在总检查时间内由 11 名 RT 完成的时间进行了比较。RT 通过问卷评估了两台扫描仪的用户友好性。使用 Shapiro-Wilk 检验检查所有连续变量的分布正态性。正态分布变量通过学生配对 t 检验进行分析,否则使用 Wilcoxon 符号秩检验比较平均值。
使用 Dot 引擎进行的 MR 检查的总检查时间从 24:53 缩短到 20:01 分钟(P <.001),并且 RT 干预减少了 61%(P <.001)。RT 评估 Dot 引擎自动选择 MR 协议的能力明显优于传统用户界面(P =.001)。
根据这项初步研究,Dot 工作流程引擎是一款节省时间的用户辅助软件,可显著减少 RT 的工作量,并有助于实现神经放射学检查的自动化,以提高工作流程效率。