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放射性药物外渗的患者个体化特征描述和剂量学的实用工具。

Practical Tools for Patient-specific Characterization and Dosimetry of Radiopharmaceutical Extravasation.

机构信息

Carilion Clinic, Roanoke VA and Blue Ridge Medical Physics, Daleville, VA.

University of Tennessee Graduate School of Medicine, Knoxville TN.

出版信息

Health Phys. 2022 Nov 1;123(5):343-347. doi: 10.1097/HP.0000000000001600. Epub 2022 Jul 15.

Abstract

Extravasation during radiopharmaceutical injection may occur with a frequency of more than 10%. In these cases, radioactivity remains within tissue and deposits unintended radiation dose. Characterization of extravasations is a necessary step in accurate dosimetry, but a lack of free and publicly available tools hampers routine standardized analysis. Our objective was to improve existing extravasation characterization and dosimetry methods and to create and validate tools to facilitate standardized practical dosimetric analysis in clinical settings. Using Monte Carlo simulations, we calculated dosimetric values for sixteen nuclear medicine isotopes: 11 C, 64 Cu, 18 F, 67 Ga, 68 Ga, 123 I, 131 I, 111 In, 177 Lu, 13 N, 15 O, 82 Rb, 153 Sm, 89 Sr, 99m Tc, and 90 Y. We validated our simulation results against five logical alternative dose assessment methods. We then created three new characterization tools: a worksheet, a spreadsheet, and a web application. We assessed each tool by recalculating extravasation dosimetry results found in the literature and used each of the tools for patient cases to show clinical practicality. Average variation between our simulation results and alternative methods was 3.1%. Recalculation of published dosimetry results indicated an average error of 7.9%. Time required to use each characterization tool ranged from 1 to 5 min, and agreement between the three tools was favorable. We improved upon existing methods by creating new tools for characterization and dosimetry of radiopharmaceutical extravasation. These free and publicly available tools will enable standardized routine clinical analysis and benefit patient care, clinical follow-up, documentation, and event reporting.

摘要

放射性药物注射时可能会发生外渗,频率超过 10%。在这些情况下,放射性物质会留在组织内,并沉积非预期的辐射剂量。外渗的特征描述是准确剂量计算的必要步骤,但缺乏免费和公开可用的工具会阻碍常规标准化分析。我们的目标是改进现有的外渗特征描述和剂量计算方法,并创建和验证工具,以促进临床环境中的标准化实际剂量分析。我们使用蒙特卡罗模拟计算了十六种核医学同位素的剂量学值:11 C、64 Cu、18 F、67 Ga、68 Ga、123 I、131 I、111 In、177 Lu、13 N、15 O、82 Rb、153 Sm、89 Sr、99m Tc 和 90 Y。我们将模拟结果与五种逻辑替代剂量评估方法进行了验证。然后,我们创建了三个新的特征描述工具:工作表、电子表格和网络应用程序。我们通过重新计算文献中发现的外渗剂量学结果来评估每个工具,并使用每个工具来评估患者病例,以展示临床实用性。我们的模拟结果与替代方法之间的平均差异为 3.1%。重新计算已发表的剂量学结果表明平均误差为 7.9%。使用每个特征描述工具的时间从 1 分钟到 5 分钟不等,并且三个工具之间的一致性良好。我们通过创建新的放射性药物外渗特征描述和剂量计算工具来改进现有的方法。这些免费和公开可用的工具将使标准化的常规临床分析成为可能,并有利于患者护理、临床随访、文档记录和事件报告。

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