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电子顺磁共振成像中的靶向感兴趣区域成像。

Targeted-ROI imaging in electron paramagnetic resonance imaging.

作者信息

Pan Xiaochuan, Xia Dan, Halpern Howard

机构信息

Department of Radiology, The University of Chicago, Chicago, IL 60637-7117, USA.

出版信息

J Magn Reson. 2007 Jul;187(1):66-77. doi: 10.1016/j.jmr.2007.02.010. Epub 2007 Feb 23.

Abstract

Electron paramagnetic resonance imaging (EPRI) is a technique that has been used for in vivo oxygen imaging of small animals. In continuous wave (CW) EPRI, the measurement can be interpreted as a sampled 4D Radon transform of the image function. The conventional filtered-backprojection (FBP) algorithm has been used widely for reconstructing images from full knowledge of the Radon transform acquired in CW EPRI. In practical applications of CW EPRI, one often is interested in information only in a region of interest (ROI) within the imaged subject. It is desirable to accurately reconstruct an ROI image only from partial knowledge of the Radon transform because acquisition of the partial data set can lead to considerable reduction of imaging time. The conventional FBP algorithm cannot, however, reconstruct accurate ROI images from partial knowledge of the Radon transform of even dimension. In this work, we describe two new algorithms, which are referred to as the backprojection filtration (BPF) and minimum-data filtered-backprojection (MDFBP) algorithms, for accurate ROI-image reconstruction from a partial Radon transform (or, truncated Radon transform) in CW EPRI. We have also performed numerical studies in the context of ROI-image reconstruction of a synthetic 2D image with density similar to that found in a small animal EPRI. This demonstrates both the inadequacy of the conventional FBP algorithm and the success of BPF and MDFBP algorithms in ROI reconstruction. The proposed ROI imaging approach promises a means to substantially reduce image acquisition time in CW EPRI.

摘要

电子顺磁共振成像(EPRI)是一种已用于小动物体内氧成像的技术。在连续波(CW)EPRI中,测量可解释为图像函数的采样4D拉东变换。传统的滤波反投影(FBP)算法已广泛用于根据在CW EPRI中获取的完整拉东变换知识来重建图像。在CW EPRI的实际应用中,人们通常只对成像对象内感兴趣区域(ROI)中的信息感兴趣。仅根据拉东变换的部分知识准确重建ROI图像是很有必要的,因为采集部分数据集可以显著减少成像时间。然而,传统的FBP算法无法从偶数维拉东变换的部分知识中重建准确的ROI图像。在这项工作中,我们描述了两种新算法,即反投影滤波(BPF)和最小数据滤波反投影(MDFBP)算法,用于在CW EPRI中从部分拉东变换(或截断拉东变换)准确重建ROI图像。我们还在具有与小动物EPRI中相似密度的合成二维图像的ROI图像重建背景下进行了数值研究。这既证明了传统FBP算法的不足,也证明了BPF和MDFBP算法在ROI重建中的成功。所提出的ROI成像方法有望大幅减少CW EPRI中的图像采集时间。

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