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Evaluation of geometric and exposure parameters used in fluoroscopically-guided neuro-interventional procedures

机译:评估在荧光镜引导的神经介入手术中使用的几何参数和暴露参数

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The imaging parameters used in neurointerventional procedures were evaluated to better understand the exposure techniques used clinically and their impact on patient dose. All parameters are available on the imaging system's network bus in real time for each exposure pulse during a procedure. The Canon Dose Tracking System (DTS), which we developed, records the parameters of each exposure event in a raw data log file of controller area network (CAN) packets. We have collected such log files for 120 neurointerventional cases. Parameters are extracted by converting the raw data log file to a reformatted text file using a MATLAB script. The text file is input into a Microsoft Visual Studio project which outputs a new text file, which, with a reference table, allows the parameters to be identified. A written Python script is used to extract the specific parameters that were to be evaluated and output a .csv file. These were then input into MATLAB for analysis. The parameters extracted were the kVp, beam filter type, mAs, and the cranial/caudal angle as well as the RAO/LAO angle for the frontal and lateral gantries for DA and pulsed fluoroscopy (PF) modes. The gantry angles ranged from 34° CRA to 42° CAU and from 114° RAO to 91° LAO for DA and PF, respectively. The median kVp was 84 and 73 and the average per frame mAs was about 11 and 1.8 for DA and PF, respectively. This analysis should allow a better understanding of clinical practice in order to relate technique to patient and staff dose.
机译:评估神经诊断程序中使用的成像参数以更好地理解临床上使用的曝光技术及其对患者剂量的影响。在过程中,在成像系统的网络总线上可在成像系统的网络总线上获得所有参数,以便在过程中进行每个曝光脉冲。我们开发的佳能剂量跟踪系统(DTS)记录了控制器区域网络(CAN)数据包的原始数据日志文件中的每个曝光事件的参数。我们已收集了120个神经事件案件的日志文件。通过使用MATLAB脚本将原始数据日志文件转换为重新格式化的文本文件来提取参数。文本文件被输入到Microsoft Visual Studio项目中,该项目输出新的文本文件,其中包含参考表允许识别参数。写入的Python脚本用于提取要评估的特定参数并输出.csv文件。然后将这些输入到MATLAB中进行分析。提取的参数是KVP,梁滤波器类型,MAS和颅/尾角以及用于DA和脉冲荧光透视(PF)模式的前部和横向龙头的RAO / LAO角。龙门角范围为34°CRA至42°CAU,分别为114°RAO至91°THO,对于DA和PF。中位KVP为84和73,平均每帧MAS分别为DA和PF的11和1.8。该分析应更好地理解临床实践,以使技术与患者和员工剂量相关联。

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