Advancing Patient Safety in Interventional Radiology: Effective Dose Evaluation and LDRL

Alvarez M, Guassu Rac, Rosa Aa, Sousa Rr, DP Pina
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Abstract

This study highlights the significance of radioprotection in interventional radiology, focusing on the assessment of Effective Dose values to which patients are exposed. To facilitate this, we developed a semi-automatic software employing Optical Character Recognition technology. This software analysed 1125 interventional procedures conducted between January 2021 and September 2023 at a large Brazilian hospital. The database includes the type of procedure, Air Kerma value, Kerma-Area Product, number of cineangiography images, and exposure duration, all realized on an Artis Zee® (Siemens Healthineers, Germany) C-arm. We established Local Diagnostic Reference Levels (LDRLs) and calculated Effective Dose values using the PCXMC 2.0 Monte Carlo simulation software. These calculations were based on data from the hospital and LDRLs determined in subsequent studies. The findings reveal that both the LDRLs and the calculated Effective Dose generally fall below the values reported in existing literature. This underscores the efficacy of our methodology in enhancing radioprotection and dose monitoring within the studied hemodynamics sector.
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促进介入放射学中的患者安全:有效剂量评估和 LDRL
这项研究强调了放射防护在介入放射学中的重要性,重点是评估患者所暴露的有效剂量值。为此,我们开发了一款采用光学字符识别技术的半自动软件。该软件分析了巴西一家大型医院在 2021 年 1 月至 2023 年 9 月期间进行的 1125 例介入手术。数据库包括手术类型、Air Kerma值、Kerma-Area乘积、电影血管造影图像数量和曝光持续时间,所有这些都是在Artis Zee®(德国西门子医疗集团)C型臂上实现的。我们使用 PCXMC 2.0 蒙特卡洛模拟软件确定了局部诊断参考水平 (LDRL) 并计算了有效剂量值。这些计算基于医院的数据和后续研究确定的 LDRL。研究结果表明,LDRL 和计算出的有效剂量一般都低于现有文献报道的数值。这凸显了我们的方法在所研究的血液动力学领域内加强辐射防护和剂量监测的有效性。
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