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Methodological approaches to planar and volumetric scintigraphic imaging of small volume targets with high spatial resolution and sensitivity

机译:具有高空间分辨率和灵敏度的小体积目标平面和体积闪烁显像的方法学方法

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摘要

Single-photon emission computed tomography (SPECT) is a non-invasive imaging technique, which provides information reporting the functional states of tissues. SPECT imaging has been used as a diagnostic tool in several human disorders and can be used in animal models of diseases for physiopathological, genomic and drug discovery studies. However, most of the experimental models used in research involve rodents, which are at least one order of magnitude smaller in linear dimensions than man. Consequently, images of targets obtained with conventional gamma-cameras and collimators have poor spatial resolution and statistical quality. We review the methodological approaches developed in recent years in order to obtain images of small targets with good spatial resolution and sensitivity. Multipinhole, coded mask- and slit-based collimators are presented as alternative approaches to improve image quality. In combination with appropriate decoding algorithms, these collimators permit a significant reduction of the time needed to register the projections used to make 3-D representations of the volumetric distribution of target’s radiotracers. Simultaneously, they can be used to minimize artifacts and blurring arising when single pinhole collimators are used. Representation images are presented, which illustrate the use of these collimators. We also comment on the use of coded masks to attain tomographic resolution with a single projection, as discussed by some investigators since their introduction to obtain near-field images. We conclude this review by showing that the use of appropriate hardware and software tools adapted to conventional gamma-cameras can be of great help in obtaining relevant functional information in experiments using small animals.
机译:单光子发射计算机断层扫描(SPECT)是一种非侵入性成像技术,可提供报告组织功能状态的信息。 SPECT成像已被用作多种人类疾病的诊断工具,并可用于疾病的动物模型中进行生理病理,基因组和药物发现研究。但是,研究中使用的大多数实验模型都涉及啮齿动物,它们的线性尺寸至少比人小至少一个数量级。因此,使用常规伽马相机和准直仪获得的目标图像的空间分辨率和统计质量均较差。我们回顾了近年来开发的方法学方法,以获得具有良好空间分辨率和灵敏度的小目标图像。提出了多针孔,基于编码的基于掩模和基于狭缝的准直器,作为提高图像质量的替代方法。这些准直器与适当的解码算法结合使用,可以大大减少注册用于对目标放射性示踪剂的体积分布进行3D表示的投影所需的时间。同时,当使用单个针孔准直器时,它们可用于最大程度地减少伪影和模糊。呈现了代表性图像,这些图像说明了这些准直仪的使用。我们还评论了使用编码遮罩以单次投影获得断层扫描分辨率的方法,正如一些研究人员自从介绍近场图像以来引入的讨论。通过总结表明使用适合常规伽马相机的适当硬件和软件工具,可以在使用小型动物的实验中获得相关功能信息方面提供巨大帮助。

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