Department of Radiotherapy, University Medical Center Utrecht, Heidelberglaan 100, 3584 CX, Utrecht, Netherlands.
Phys Med Biol. 2018 Apr 5;63(8):085002. doi: 10.1088/1361-6560/aab50b.
For the purpose of MR-guided high-dose-rate (HDR) brachytherapy, a method for real-time localization of an HDR brachytherapy source was developed, which requires high spatial and temporal resolutions. MR-based localization of an HDR source serves two main aims. First, it enables real-time treatment verification by determination of the HDR source positions during treatment. Second, when using a dummy source, MR-based source localization provides an automatic detection of the source dwell positions after catheter insertion, allowing elimination of the catheter reconstruction procedure. Localization of the HDR source was conducted by simulation of the MR artifacts, followed by a phase correlation localization algorithm applied to the MR images and the simulated images, to determine the position of the HDR source in the MR images. To increase the temporal resolution of the MR acquisition, the spatial resolution was decreased, and a subpixel localization operation was introduced. Furthermore, parallel imaging (sensitivity encoding) was applied to further decrease the MR scan time. The localization method was validated by a comparison with CT, and the accuracy and precision were investigated. The results demonstrated that the described method could be used to determine the HDR source position with a high accuracy (0.4-0.6 mm) and a high precision (⩽0.1 mm), at high temporal resolutions (0.15-1.2 s per slice). This would enable real-time treatment verification as well as an automatic detection of the source dwell positions.
为了实现磁共振引导下高剂量率(HDR)近距离治疗的实时定位,我们开发了一种 HDR 近距离治疗源实时定位方法,该方法需要高空间和时间分辨率。基于磁共振的 HDR 源定位有两个主要目的。首先,它可以通过在治疗过程中确定 HDR 源位置来实现实时治疗验证。其次,当使用虚拟源时,基于磁共振的源定位可以在导管插入后自动检测源驻留位置,从而消除导管重建过程。通过模拟磁共振伪影进行 HDR 源定位,然后将相位相关定位算法应用于磁共振图像和模拟图像,以确定磁共振图像中 HDR 源的位置。为了提高磁共振采集的时间分辨率,降低了空间分辨率,并引入了亚像素定位操作。此外,还应用并行成像(灵敏度编码)进一步缩短了磁共振扫描时间。通过与 CT 比较验证了定位方法的准确性和精度。结果表明,该方法可以高精度(0.4-0.6mm)和高精度(≤0.1mm)、高时间分辨率(每片 0.15-1.2s)确定 HDR 源位置,从而实现实时治疗验证以及源驻留位置的自动检测。