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SPECT Imaging of 2-D and 3-D Distributed Sources with Near-Field Coded Aperture Collimation: Computer Simulation and Real Data Validation

机译:具有近场编码孔径准直的2-D和3-D分布式源的SPECT成像:计算机仿真和真实数据验证

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摘要

The imaging of distributed sources with near-field coded aperture (CA) remains extremely challenging and is broadly considered unsuitable for single-photon emission computerized tomography (SPECT). This study proposes a novel CA SPECT reconstruction approach and evaluates the feasibilities of imaging and reconstructing distributed hot sources and cold lesions using near-field CA collimation and iterative image reconstruction. Computer simulations were designed to compare CA and pinhole collimations in two-dimensional radionuclide imaging. Digital phantoms were created and CA images of the phantoms were reconstructed using maximum likelihood expectation maximization (MLEM). Errors and the contrast-to-noise ratio (CNR) were calculated and image resolution was evaluated. An ex vivo rat heart with myocardial infarction was imaged using a micro-SPECT system equipped with a custom-made CA module and a commercial 5-pinhole collimator. Rat CA images were reconstructed via the three-dimensional (3-D) MLEM algorithm developed for CA SPECT with and without correction for a large projection angle, and 5-pinhole images were reconstructed using the commercial software provided by the SPECT system. Phantom images of CA were markedly improved in terms of image quality, quantitative root-mean-squared error, and CNR, as compared to pinhole images. CA and pinhole images yielded similar image resolution, while CA collimation resulted in fewer noise artifacts. CA and pinhole images of the rat heart were well reconstructed and the myocardial perfusion defects could be clearly discerned from 3-D CA and 5-pinhole SPECT images, whereas 5-pinhole SPECT images suffered from severe noise artifacts. Image contrast of CA SPECT was further improved after correction for the large projection angle used in the rat heart imaging. The computer simulations and small-animal imaging study presented herein indicate that the proposed 3-D CA SPECT imaging and reconstruction approaches worked reasonably well, demonstrating the feasibilities of achieving high sensitivity and high resolution SPECT using near-field CA collimation.
机译:具有近场编码孔径(CA)的分布式源成像仍然极具挑战性,并且被广泛认为不适合单光子发射计算机断层扫描(SPECT)。这项研究提出了一种新颖的CA SPECT重建方法,并评估了使用近场CA准直和迭代图像重建成像和重建分布式热源和冷损伤的可行性。设计计算机模拟以比较二维放射性核素成像中的CA和针孔准直。创建数字体模,并使用最大似然期望最大化(MLEM)重建体模的CA图像。计算误差和对比噪声比(CNR),并评估图像分辨率。使用配备定制CA模块和商用5针孔准直仪的micro-SPECT系统对离体大鼠心肌梗死进行成像。通过为CA SPECT开发的三维(3-D)MLEM算法在有或没有对大投影角进行校正的情况下重建大鼠CA图像,并使用SPECT系统提供的商业软件重建了5针孔图像。与针孔图像相比,CA的幻影图像在图像质量,定量均方根误差和CNR方面均得到了显着改善。 CA和针孔图像产生相似的图像分辨率,而CA准直导致更少的噪声伪像。从心脏3D CA和5针孔SPECT图像中可以清楚地辨别出大鼠心脏的CA和针孔图像,并且可以清楚地区分出心肌灌注缺陷,而5针孔SPECT图像则受到严重的噪声伪影。校正大鼠心脏成像中使用的大投影角后,CA SPECT的图像对比度得到了进一步改善。本文介绍的计算机模拟和小动物成像研究表明,所提出的3-D CA SPECT成像和重建方法工作得相当好,证明了使用近场CA准直仪实现高灵敏度和高分辨率SPECT的可行性。

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