Department of Radiation Oncology, The Netherlands Cancer Institute, Amsterdam, The Netherlands.
Joint Department of Physics, The Institute of Cancer Research, and The Royal Marsden NHS Foundation Trust, London, United Kingdom.
Radiother Oncol. 2020 Dec;153:106-113. doi: 10.1016/j.radonc.2020.09.046. Epub 2020 Oct 2.
Diffusion-weighted imaging (DWI) for treatment response monitoring is feasible on hybrid magnetic resonance linear accelerator (MR-linac) systems. The MRI scanner of the Elekta Unity system has an adjusted design compared to diagnostic scanners. We investigated its impact on measuring the DWI-derived apparent diffusion coefficient (ADC) regarding three aspects: the choice of b-values, the spatial variation of the ADC, and scanning during radiation treatment. The aim of this study is to give recommendations for accurate ADC measurements on Unity systems.
Signal-to-noise ratio (SNR) measurements with increasing b-values were done to determine the highest bvalue that can be measured reliably. The spatial variation of the ADC was assessed on six Unity systems with a cylindrical phantom of 40 cm diameter. The influence of gantry rotation and irradiation was investigated by acquiring DWI images before and during treatment of 11 prostate cancer patients.
On the Unity system, a maximum b-value of 500 s/mm should be used for ADC quantification, as a trade-off between SNR and diffusion weighting. Accurate ADC values were obtained within 7 cm from the iso-center, while outside this region ADC values deviated more than 5%. The ADC was not influenced by the rotating linac or irradiation during treatment.
We provide Unity system specific recommendations for measuring the ADC. This will increase the consistency of ADC values acquired in different centers on the Unity system, enabling large cohort studies for biomarker discovery and treatment response monitoring.
扩散加权成像(DWI)在治疗反应监测方面在混合磁共振直线加速器(MR-linac)系统上是可行的。与诊断扫描仪相比,Elekta Unity 系统的 MRI 扫描仪具有调整后的设计。我们研究了它对测量 DWI 衍生的表观扩散系数(ADC)的三个方面的影响:b 值的选择、ADC 的空间变化以及在放射治疗期间的扫描。本研究的目的是为 Unity 系统上的准确 ADC 测量提供建议。
进行了信噪比(SNR)随 b 值增加的测量,以确定可以可靠测量的最高 b 值。使用直径为 40 cm 的圆柱形体模在六个 Unity 系统上评估 ADC 的空间变化。通过在 11 例前列腺癌患者治疗前和治疗期间获取 DWI 图像,研究了旋转龙门架和辐射的影响。
在 Unity 系统上,为了在 SNR 和扩散加权之间取得平衡,应使用最大 500 s/mm 的 b 值进行 ADC 量化。在等中心半径 7 cm 以内,可获得准确的 ADC 值,而在此区域外,ADC 值的偏差超过 5%。ADC 不受旋转的直线加速器或治疗期间的辐射影响。
我们为测量 ADC 提供了 Unity 系统的具体建议。这将提高在 Unity 系统上不同中心获取的 ADC 值的一致性,从而能够进行大型队列研究以发现生物标志物和治疗反应监测。