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像素化碲锌镉单光子发射计算机断层扫描成像系统的响应研究及与传统单光子发射计算机断层扫描系统的比较。

Investigation of Response of the Pixelated CZT SPECT Imaging System and Comparison with the Conventional SPECT System.

作者信息

Noori-Asl Mahsa, Sayyah-Koohi Pooneh

机构信息

Department of Physics, Faculty of Science, University of Mohaghegh Ardabili, Ardabil, Iran.

出版信息

J Med Phys. 2022 Oct-Dec;47(4):374-380. doi: 10.4103/jmp.jmp_41_22. Epub 2023 Jan 10.

Abstract

PURPOSE

The aim of this study is to investigate the factors affecting the response of the pixelated CZT SPECT imaging systems and to compare the performance of these systems with the conventional SPECT imaging systems.

MATERIALS AND METHODS

By using the simulation technique, the effect of applied voltage, gap size between the anode pixels, and electron cloud mobility on the response of a pixelated CZT SPECT system are investigated. Then, the response of this system is compared with the conventional SPECT system in both single- and dual-radioisotope imaging.

RESULTS

The results of this study show that increasing the applied voltage, electron cloud mobility or decreasing the gap size, in the optimal range of these parameters obtained in this study, leads to reducing the lateral charge diffusion and consequently improving the probability of the complete charge collection by the target anode pixel. In dual-radioisotope imaging by the pixelated CZT SPECT system, although higher energy resolution results in better separation of photopeaks, the presence of a low-energy tail leads to an overestimation of counts in the low-energy photopeak.

CONCLUSION

The use of the optimal values for the applied voltage, gap size, and electron cloud mobility strongly affect the performance of the pixelated CZT SPECT systems. In addition, the presence of a tail restricts the use of these systems for dual-radioisotope imaging and also, the use of the conventional methods for scatter correction.

摘要

目的

本研究旨在探究影响像素化碲锌镉单光子发射计算机断层扫描(CZT SPECT)成像系统响应的因素,并将这些系统的性能与传统SPECT成像系统进行比较。

材料与方法

利用模拟技术,研究了施加电压、阳极像素间间隙尺寸以及电子云迁移率对像素化CZT SPECT系统响应的影响。然后,在单放射性核素和双放射性核素成像中,将该系统的响应与传统SPECT系统进行比较。

结果

本研究结果表明,在本研究获得的这些参数的最佳范围内,增加施加电压、电子云迁移率或减小间隙尺寸,会导致横向电荷扩散减少,从而提高目标阳极像素完全收集电荷的概率。在像素化CZT SPECT系统的双放射性核素成像中,尽管较高的能量分辨率可使光电峰更好地分离,但低能拖尾的存在会导致低能光电峰中的计数被高估。

结论

施加电压、间隙尺寸和电子云迁移率的最佳值的使用对像素化CZT SPECT系统的性能有很大影响。此外,拖尾的存在限制了这些系统在双放射性核素成像中的应用,也限制了传统散射校正方法的使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52b9/9997538/62c41bf910e4/JMP-47-374-g001.jpg

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