Department of Radiation Oncology, National Center for Cancer Care and Research (NCCCR), Hamad Medical Corporation, Doha, Qatar.
J Appl Clin Med Phys. 2021 Dec;22(12):149-157. doi: 10.1002/acm2.13462. Epub 2021 Oct 31.
One of the main challenges to using magnetic resonance imaging (MRI) in radiotherapy is the existence of system-related geometric inaccuracies caused mainly by the inhomogeneity in the main magnetic field and the nonlinearities of the gradient coils. Several physical phantoms, with fixed configuration, have been developed and commercialized for the assessment of the MRI geometric distortion. In this study, we propose a new design of a customizable phantom that can fit any type of radio frequency (RF) coil. It is composed of 3D printed plastic blocks containing holes that can hold glass tubes which can be filled with any liquid. The blocks can be assembled to construct phantoms with any dimension. The feasibility of this design has been demonstrated by assembling four phantoms with high robustness allowing the assessment of the geometric distortion for the GE split head coil, the head and neck array coil, the anterior array coil, and the body coil. Phantom reproducibility was evaluated by analyzing the geometric distortion on CT acquisition of five independent assemblages of the phantom. This solution meets all expectations in terms of having a robust, lightweight, modular, and practical tool for measuring distortion in three dimensions. Mean error in the position of the tubes was less than 0.2 mm. For the geometric distortion, our results showed that for all typical MRI sequences used for radiotherapy, the mean geometric distortion was less than 1 mm and less than 2.5 mm over radial distances of 150 mm and 250 mm, respectively. These tools will be part of a quality assurance program aimed at monitoring the image quality of MRI scanners used to guide radiation therapy.
在放射治疗中使用磁共振成像(MRI)的主要挑战之一是存在系统相关的几何不准确性,主要由主磁场的不均匀性和梯度线圈的非线性引起。已经开发并商业化了几种具有固定配置的物理体模,用于评估 MRI 几何失真。在这项研究中,我们提出了一种新的可定制体模的设计,它可以适合任何类型的射频(RF)线圈。它由包含可以容纳玻璃管的孔的 3D 打印塑料块组成,玻璃管可以填充任何液体。这些块可以组装成具有任何尺寸的体模。通过组装四个具有高稳健性的体模,证明了这种设计的可行性,这四个体模可以评估 GE 分体头线圈、头颈部阵列线圈、前阵列线圈和体线圈的几何失真。通过分析五个独立组装体模的 CT 采集上的几何失真,评估了体模的可重复性。这种解决方案在具有稳健、轻便、模块化和实用的三维失真测量工具方面满足了所有期望。管的位置的平均误差小于 0.2 毫米。对于几何失真,我们的结果表明,对于用于放射治疗的所有典型 MRI 序列,平均几何失真小于 1 毫米,在 150 毫米和 250 毫米的径向距离上分别小于 2.5 毫米。这些工具将成为质量保证计划的一部分,旨在监测用于指导放射治疗的 MRI 扫描仪的图像质量。