...
首页> 外文期刊>Journal of the Royal Society Interface >Extending the dynamic range of phase contrast magnetic resonance velocity imaging using advanced higher-dimensional phase unwrapping algorithms
【24h】

Extending the dynamic range of phase contrast magnetic resonance velocity imaging using advanced higher-dimensional phase unwrapping algorithms

机译:使用先进的高维相位展开算法扩展相位对比磁共振速度成像的动态范围

获取原文
获取原文并翻译 | 示例
           

摘要

Phase contrast magnetic resonance velocity imaging is a powerful technique for quantitative in vivo blood flow measurement.Current practice normally involves restricting the sensitivity of the technique so as to avoid the problem of the measured phase being 'wrapped' onto the range - pi to + pi.However,as a result,dynamic range and signal-to-noise ratio are sacrificed.Alternatively,the true phase values can be estimated by a phase unwrapping process which consists of adding integral multiples of 2 pi to the measured wrapped phase values.In the presence of noise and data undersampling,the phase unwrapping problem becomes non-trivial.In this paper,we investigate the performance of three different phase unwrapping algorithms when applied to three-dimensional(two spatial axes and one time axis)phase contrast datasets.A simple one-dimensional temporal unwrapping algorithm,a more complex and robust three-dimensional unwrapping algorithm and a novel velocity encoding unwrapping algorithm which involves unwrapping along a fourth dimension(the 'velocity encoding' direction)are discussed,and results from the three are presented and compared.It is shown that compared to the traditional approach,both dynamic range and signal-to-noise ratio can be increased by a factor of up to five times,which demonstrates considerable promise for a possible eventual clinical implementation.The results are also of direct relevance to users of any other technique delivering time-varying two-dimensional phase images,such as dynamic speckle interferometry and synthetic aperture radar.
机译:相位对比磁共振速度成像是一种强大的用于定量体内血流测量的技术。电流实践通常涉及限制该技术的灵敏度,以避免测量的阶段的问题“包裹”到范围 - pi到+ pi然而,由于结果,牺牲了动态范围和信噪比。可以通过相位展开过程来估计真正的相位值,该过程包括将2 pi的积分倍数添加到测量的包装相位值.in噪声和数据欠采样的存在,相位展开问题变得不变。在本文中,我们研究了应用于三维(两个空间轴和一个时间轴)相位对比数据集时三种不同相位展开算法的性能。一种简单的一维时间展开算法,更复杂且坚固的三维展开算法和一种新型速度编码展开算法WHIC h涉及沿第四尺寸的展开(“速度编码”方向)被讨论,并且提出和比较了三个结果。显示与传统方法相比,动态范围和信噪比相比可以是增加了多达五次的因素,这表明了可能的最终临床实施的相当值。结果也与传送时变二维相位图像的任何其他技术的用户直接相关,例如动态斑点干涉测量和合成孔径雷达。

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