Medical Physics Division, Santa Croce e Carle Hospital, 12100 Cuneo, Italy.
Medical Physics Unit, AUSL Toscana Centro, 51100 Pistoia, Italy.
Tomography. 2023 Oct 17;9(5):1876-1902. doi: 10.3390/tomography9050149.
Imaging biomarkers (IBs) have been proposed in medical literature that exploit images in a quantitative way, going beyond the visual assessment by an imaging physician. These IBs can be used in the diagnosis, prognosis, and response assessment of several pathologies and are very often used for patient management pathways. In this respect, IBs to be used in clinical practice and clinical trials have a requirement to be precise, accurate, and reproducible. Due to limitations in imaging technology, an error can be associated with their value when considering the entire imaging chain, from data acquisition to data reconstruction and subsequent analysis. From this point of view, the use of IBs in clinical trials requires a broadening of the concept of quality assurance and this can be a challenge for the responsible medical physics experts (MPEs). Within this manuscript, we describe the concept of an IB, examine some examples of IBs currently employed in clinical practice/clinical trials and analyze the procedure that should be carried out to achieve better accuracy and reproducibility in their use. We anticipate that this narrative review, written by the components of the EFOMP working group on "the role of the MPEs in clinical trials"-imaging sub-group, can represent a valid reference material for MPEs approaching the subject.
医学文献中提出了成像生物标志物 (IBs),这些标志物以定量的方式利用图像,超越了影像医师的视觉评估。这些 IBs 可用于多种疾病的诊断、预后和反应评估,并且经常用于患者管理路径。在这方面,用于临床实践和临床试验的 IBs 需要具有精确性、准确性和可重复性。由于成像技术的限制,当考虑从数据采集到数据重建和随后的分析的整个成像链时,它们的价值可能会出现误差。从这个角度来看,在临床试验中使用 IBs 需要扩大质量保证的概念,这对于负责的医学物理专家 (MPE) 来说可能是一个挑战。在本文中,我们描述了 IBs 的概念,检查了目前在临床实践/临床试验中使用的一些 IBs 示例,并分析了为实现其使用的更高准确性和可重复性而应进行的程序。我们预计,由 EFOMP 工作组“MPE 在临床试验中的作用”-成像分组的成员撰写的这篇叙述性评论,可以成为 MPE 处理该主题的有效参考材料。