首页> 外文期刊>Journal of cardiovascular magnetic resonance : >Analysis of temperature dependence of background phase errors in phase-contrast cardiovascular magnetic resonance
【24h】

Analysis of temperature dependence of background phase errors in phase-contrast cardiovascular magnetic resonance

机译:相衬心血管磁共振中背景相位误差的温度依赖性分析

获取原文
           

摘要

BackgroundThe accuracy of phase-contrast cardiovascular magnetic resonance (PC-CMR) can be compromised by background phase errors. It is the objective of the present work to provide an analysis of the temperature dependence of background phase errors in PC-CMR by means of gradient mount temperature sensing and magnetic field monitoring.MethodsBackground phase errors were measured for various temperatures of the gradient mount using magnetic field monitoring and validated in a static phantom. The effect of thermal changes during k-space acquisition was simulated and confirmed with measurements in a stationary phantom.ResultsThe temperature of the gradient mount was found to increase by 20–30 K during PC-CMR measurements of 6–12 min duration. Associated changes in background phase errors of up to 11% or 0.35 radian were measured at 10 cm from the magnet’s iso-center as a result of first order offsets. Zeroth order phase errors exhibited little thermal dependence.ConclusionsIt is concluded that changes in gradient mount temperature significantly modify background phase errors during PC-CMR with high gradient duty cycle. Since temperature increases significantly during the first minutes of scanning the results presented are also of relevance for single-slice or multi-slice PC-CMR scans. The findings prompt for further studies to investigate advanced correction methods taking into account gradient temperature and/or the use of concurrent field-monitoring to map gradient-induced fields throughout the scan.
机译:背景本底相差会损害相衬心血管磁共振(PC-CMR)的准确性。本工作的目的是通过梯度安装温度感测和磁场监测来分析PC-CMR中背景相位误差的温度依赖性。方法使用磁法测量梯度安装的各种温度的背景相位误差现场监控并在静态模型中进行验证。模拟了k空间采集过程中热变化的影响,并通过固定体模进行了测量,结果得到了证实。结果发现,在6–12分钟的PC-CMR测量过程中,梯度支架的温度增加了20–30K。由于一阶偏移,在距磁体等中心点10 cm处测量到高达11%或0.35弧度的背景相位误差的相关变化。零阶相位误差对热的依赖性很小。结论结论:梯度安装温度的变化显着改变了具有高梯度占空比的PC-CMR期间的背景相位误差。由于在扫描的前几分钟内温度会显着升高,因此显示的结果也与单层或多层PC-CMR扫描相关。这些发现促使我们进行进一步的研究,以研究先进的校正方法,其中要考虑到梯度温度和/或在整个扫描过程中同时使用场监测来绘制梯度感应场。

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