Medical Physics Department, ASST GOM Niguarda, Milano, Italy.
Medical Physics Department, ASST GOM Niguarda, Milano, Italy.
Phys Med. 2021 Jan;81:182-184. doi: 10.1016/j.ejmp.2020.12.017. Epub 2021 Jan 16.
In recent years, a growing interest has been shown in the implementation of software dedicated to the skin dose calculation, since the Fluoroscopically Guided Interventions are expanding in various medical areas. In this regard, a review article recently published by Malchair et al. (2020) is of great importance as it provides the reader with useful references to the software currently available to estimate the patient's skin dose. Despite the usefulness of collecting and summarizing in one paper the different software solutions, a few critical issues have emerged related to some parameters and configurations used in the estimation; additional details concerning patient's size and position can be added to the information cited by the authors, giving greater robustness to the software calculation. Furthermore, software results cited in the benchmarking without reference cause a lack of solid information. Our suggestion is to adopt the given criteria to evaluate every available software solutions thus helping the eventual user to analyse the tool before adopting it.
近年来,人们对专门用于皮肤剂量计算的软件的实施越来越感兴趣,因为荧光透视引导介入在各个医学领域的应用正在扩大。在这方面,Malchair 等人最近发表的一篇综述文章非常重要,因为它为读者提供了有用的参考资料,了解目前可用于估计患者皮肤剂量的软件。尽管将不同的软件解决方案收集和总结在一篇论文中很有用,但在估计中使用的一些参数和配置方面出现了一些问题;可以向作者引用的信息中添加有关患者大小和位置的更多详细信息,从而使软件计算更加稳健。此外,在基准测试中引用没有参考的软件结果会导致缺乏可靠的信息。我们的建议是采用给定的标准来评估每个可用的软件解决方案,从而帮助最终用户在采用该工具之前对其进行分析。