论文标题

双空间压缩感测

Dual-space Compressed Sensing

论文作者

Lv, Xudong, Ajoy, Ashok

论文摘要

压缩传感(CS)是一种强大的方法,通常用于加速图像采集。当正在考虑的图像稀疏但可以在非sparse的基础上进行采样时,它特别适合于情况。在这里,我们在可以同时将图像在两个不连贯的空间中采样的情况下提出了一个替代CS制度,并特别关注傅立叶相互空间中的图像采样(例如,真实空间和K空间)。信息是从一个空间到另一个空间的前进,从而使新的机会有效地解决了CS图像重建核心的优化问题。我们表明,对于常规CS,成像加速度的增长很大。该技术为噪声提供了增强的鲁棒性,并且非常适合边缘检测问题。我们设想了针对特定区域的纳米载体(ND)颗粒的成像收集的应用,从而利用了晶格缺陷(NV中心)的能力,使得通过光学荧光和13C磁共振(MRI)分别通过光学荧光和13C磁共振(MRI)同时在相互空间中成像ND颗粒。从广义上讲,这项工作表明,在许多实际环境中,在信号获取时会加快CS原理与混合采样策略相连。

Compressed sensing (CS) is a powerful method routinely employed to accelerate image acquisition. It is particularly suited to situations when the image under consideration is sparse but can be sampled in a basis where it is non-sparse. Here we propose an alternate CS regime in situations where the image can be sampled in two incoherent spaces simultaneously, with a special focus on image sampling in Fourier reciprocal spaces (e.g. real-space and k-space). Information is fed-forward from one space to the other, allowing new opportunities to efficiently solve the optimization problem at the heart of CS image reconstruction. We show that considerable gains in imaging acceleration are then possible over conventional CS. The technique provides enhanced robustness to noise, and is well suited to edge-detection problems. We envision applications for imaging collections of nanodiamond (ND) particles targeting specific regions in a volume of interest, exploiting the ability of lattice defects (NV centers) to allow ND particles to be imaged in reciprocal spaces simultaneously via optical fluorescence and 13C magnetic resonance imaging (MRI) respectively. Broadly this work suggests the potential to interface CS principles with hybrid sampling strategies to yield speedup in signal acquisition in many practical settings.

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