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用于单光子发射计算机断层成像的针孔和多针孔准直器的进展。

Advances in pinhole and multi-pinhole collimators for single photon emission computed tomography imaging.

作者信息

Islamian Jalil Pirayesh, Azazrm AhmadReza, Mahmoudian Babak, Gharapapagh Esmail

机构信息

Department of Medical Physics, Faculty of Medicine, Tabriz University of Medical Sciences, Tabriz, Iran.

Department of Radiology, Faculty of Medicine, Unit of Nuclear Medicine, Tabriz University of Medical Sciences, Tabriz, Iran.

出版信息

World J Nucl Med. 2015 Jan-Apr;14(1):3-9. doi: 10.4103/1450-1147.150505.

Abstract

The collimator in single photon emission computed tomography (SPECT), is an important part of the imaging chain. One of the most important collimators that used in research, preclinical study, small animal, and organ imaging is the pinhole collimator. Pinhole collimator can improve the tradeoff between sensitivity and resolution in comparison with conventional parallel-hole collimator and facilities diagnosis. However, a major problem with pinhole collimator is a small field of view (FOV). Multi-pinhole collimator has been investigated in order to increase the sensitivity and FOV with a preserved spatial resolution. The geometry of pinhole and multi-pinhole collimators is a critical factor in the image quality and plays a key role in SPECT imaging. The issue of the material and geometry for pinhole and multi-pinhole collimators have been a controversial and much disputed subject within the field of SPECT imaging. On the other hand, recent developments in collimator optimization have heightened the need for appropriate reconstruction algorithms for pinhole SPECT imaging. Therefore, iterative reconstruction algorithms were introduced to minimize the undesirable effect on image quality. Current researches have focused on geometry and configuration of pinhole and multi-pinhole collimation rather than reconstruction algorithm. The lofthole and multi-lofthole collimator are samples of novel designs. The purpose of this paper is to provide a review on recent researches in the pinhole and multi-pinhole collimators for SPECT imaging.

摘要

单光子发射计算机断层扫描(SPECT)中的准直器是成像链的重要组成部分。在研究、临床前研究、小动物和器官成像中使用的最重要的准直器之一是针孔准直器。与传统的平行孔准直器相比,针孔准直器可以改善灵敏度和分辨率之间的权衡,并有助于诊断。然而,针孔准直器的一个主要问题是视野(FOV)较小。为了在保持空间分辨率的同时提高灵敏度和视野,人们对多孔针准直器进行了研究。针孔和多孔针准直器的几何形状是影响图像质量的关键因素,在SPECT成像中起着关键作用。针孔和多孔针准直器的材料和几何形状问题一直是SPECT成像领域中一个有争议且备受争议的话题。另一方面,准直器优化的最新进展增加了对针孔SPECT成像合适重建算法的需求。因此,引入了迭代重建算法以最小化对图像质量的不良影响。目前的研究集中在针孔和多孔针准直的几何形状和配置上,而不是重建算法。针孔和多针孔准直器是新颖设计的示例。本文的目的是对SPECT成像中针孔和多孔针准直器的最新研究进行综述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a85/4337004/a23a9be9e87b/WJNM-14-3-g001.jpg

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