首页> 外文会议>2011 International Conference on Communications and Signal Processing >Free breathing cardiac perfusion MRI reconstruction using a sparse and low rank model: Validation with the Physiologically Improved NCAT phantom
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Free breathing cardiac perfusion MRI reconstruction using a sparse and low rank model: Validation with the Physiologically Improved NCAT phantom

机译:使用稀疏和低秩模型进行的自由呼吸心脏灌注MRI重建:通过生理改善的NCAT体模进行验证

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We recently proposed an accelerated dynamic magnetic resonance imaging (MRI) reconstruction algorithm that exploits the underlying low rank and sparse properties of the data to achieve highly accelerated reconstructions. In this paper, we validate our algorithm in the context of dynamic free breathing cardiac Perfusion MRI on the Physiologically Improved Non Uniform Cardiac Torso Phantom, PINCAT phantom. The practical utilities of our scheme in providing significantly better reconstructions at higher accelerations in comparison to existing methods are studied. We demonstrate that our scheme do not have trade offs with accurate temporal modeling and spatial quality unlike the existing low rank based schemes. Our results also show the capability of our scheme to achieve better reconstruction qualities at high accelerations in comparison to using only the low rank or sparsity properties individually. We argue that the speed up obtained by our scheme could be capitalized in perfusion imaging to provide better spatio-temporal resolutions and volume coverage while the subject is freely breathing.
机译:我们最近提出了一种加速动态磁共振成像(MRI)重建算法,其利用数据的底层低等级和稀疏性质来实现高度加速的重建。本文在动态自由呼吸心脏灌注MRI上验证了我们在生理学上改进的非均匀心脏躯干幽灵,吡喃粉型的情况下验证了我们的算法。研究了我们在与现有方法相比,在更高的加速下提供明显更好地重建的实用性实用性。我们证明,与现有的低级别的方案不同,我们的计划没有以准确的时间建模和空间质量进行贸易问题。我们的结果还显示了我们的方案,以便在高速加速下实现更好的重建品质,相比仅使用低等级或稀疏性质。我们认为,我们的计划获得的速度可以在灌注成像中大写,以提供更好的时空分辨率和体积覆盖,而受试者自由呼吸。

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