首页> 外文会议>Physics of Medical Imaging >Optimal acquisition setting for dual-contrast imaging with gadolinium and iodine on a research whole-body photon-counting-detector (PCD) CT
【24h】

Optimal acquisition setting for dual-contrast imaging with gadolinium and iodine on a research whole-body photon-counting-detector (PCD) CT

机译:用钆和碘与研究全身光子计数探测器(PCD)CT的双对比度成像的最佳采集设定

获取原文

摘要

Photon-counting detectors (PCDs) can resolve the energy of incident x-ray photons, which allows simultaneous imaging of two contrast materials, such as iodine (I) and gadolinium (Gd), with a single scan. This capability may allow reduction of patient radiation dose for clinical applications that typically require multi-phase acquisitions by injecting different contrast media at different times and scanning only once to differentiate, for example, venous and arterial phases. The material decomposition performance on PCD-CT is dependent on acquisition setup including tube potential and energy thresholds. In this work, we performed a phantom study to evaluate the optimal acquisition settings for dual-contrast imaging using I and Gd on a research PCD-CT system. We further compared our results with a clinical dual-source dual-energy (DSDE) CT. An abdomen-shaped water phantom with I and Gd inserts of different concentrations was scanned using different energy thresholds and tube potentials to identify the optimal setup for I and Gd quantification. Results demonstrated that accurate quantification of I and Gd concentration was possible using the PCD-CT system. A tube potential of 80 kV and an energy threshold close to the K-edge of Gd (50 keV) was found to yield the best performance in terms of measurement root-mean-square-error (RMSE = 4.4 mg/mL for I and RMSE = 3.3 mg/mL for Gd). Further, the performance of PCD-CT with optimized setup was found to outperform DSDE-CT (RMSE = 8.1 mg/mL for I and 5.7 mg/mL for Gd).
机译:光子计数检测器(PCD)可以解析入射X射线光子的能量,这允许同时成像,例如碘(I)和钆(Gd),具有单次扫描。这种能力可以允许通过在不同时间注入不同的造影剂并仅进行一次区分,例如静脉和动脉阶段来减少通常需要多相采集的临床应用的临床应用的患者辐射剂量。 PCD-CT上的材料分解性能取决于包括管电位和能量阈值的采集设置。在这项工作中,我们进行了影像学用我和Gd研究PCD-CT系统来评估双对比成像的最佳采集设置。我们进一步将结果与临床双源双能量(DSDE)CT进行了比较。使用不同的能量阈值和管电势,以确定用于I和Gd量化的最佳设置与不同浓度的我和Gd插入腹部形水假体进行扫描。结果表明,使用PCD-CT系统可以确定I和GD浓度的准确定量。发现80 kV的管电位和接近GD(50keV)的K-Edge的能量阈值,以产生最佳性能,从测量根均方误差(Rmse = 4.4mg / ml,而且RMSE = 3.3 mg / ml for GD)。此外,发现PCD-CT具有优化设置的性能,以优于DSDE-CT(RMSE = 8.1mg / ml,对于I和5.7mg / ml,GD)。

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