首页> 外文期刊>Current Directions in Biomedical Engineering >Assessment of 4D Ultrasound Systems for Image-guided Radiation Therapy – Image Quality, Framerates and CT Artifacts : Current Directions in Biomedical Engineering
【24h】

Assessment of 4D Ultrasound Systems for Image-guided Radiation Therapy – Image Quality, Framerates and CT Artifacts : Current Directions in Biomedical Engineering

机译:影像引导放射治疗的4D超声系统评估-图像质量,帧速率和CT伪像:生物医学工程的当前方向

获取原文
           

摘要

4D ultrasound (4D US) is gaining relevance as a tracking method in radiation therapy (RT) with modern matrix array probes offering new possibilities for real-time target detection. However, for clinical implementation of USguided RT, image quality, volumetric framerate and artifacts caused by the probe’s presence during planning and / or setup computed tomography (CT) must be quantified. We compared three diagnostic 4D US systems with matrix array probes using a commercial wire phantom to measure spatial resolution as well as a calibration and a torso phantom to assess different image quality metrics. CT artifacts were quantified in the torso phantom by calculating the total variation and percentage of affected voxels between a reference CT scan and CT scans with probes in place. We found that state-of-the-art 4D US systems with small probes can fit inside the CT bore and cause fewer metal artifacts than larger probes. US image quality varies between systems and is task-dependent. Volume sizes and framerates are much higher than the commercial guidance solution for US-guided RT, warranting further investigation regarding clinical performance for image guidance.
机译:4D超声(4D US)作为一种放射疗法(RT)中的跟踪方法,具有现代矩阵阵列探针的重要性,为实时目标检测提供了新的可能性。但是,对于临床应用的USguided RT,必须对在计划和/或设置计算机断层扫描(CT)过程中由探头的存在引起的图像质量,体积帧率和伪影进行量化。我们将三种诊断4D US系统与矩阵阵列探针进行了比较,这些系统使用商用金属丝幻影来测量空间分辨率以及校准和躯干幻影来评估不同的图像质量指标。通过计算参考CT扫描和装有探头的CT扫描之间受影响体素的总变化和百分比,可以量化躯干体模中的CT伪影。我们发现,带有小型探头的最新4D US系统可以安装在CT孔内,并且与大型探头相比,可以减少金属假象。美国图像质量在系统之间有所不同,并且取决于任务。体积大小和帧速率远高于美国引导RT的商业指导解决方案,因此有必要进一步研究图像指导的临床性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号