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Optimization of a High Resolution Small Animal SPECT System using GATE and STIR Software

https://repo.qst.go.jp/records/78075
https://repo.qst.go.jp/records/78075
ef00c655-8bf8-413e-8adc-e06fad0a4e42
Item type 会議発表論文 / Conference Paper(1)
公開日 2019-12-19
タイトル
タイトル Optimization of a High Resolution Small Animal SPECT System using GATE and STIR Software
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_5794
資源タイプ conference paper
アクセス権
アクセス権 metadata only access
アクセス権URI http://purl.org/coar/access_right/c_14cb
著者 Han Gyu, Kang

× Han Gyu, Kang

WEKO 814795

Han Gyu, Kang

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田島, 英朗

× 田島, 英朗

WEKO 814796

田島, 英朗

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山谷, 泰賀

× 山谷, 泰賀

WEKO 814797

山谷, 泰賀

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Jong Hong, Seong

× Jong Hong, Seong

WEKO 814798

Jong Hong, Seong

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Kang, Hangyu

× Kang, Hangyu

WEKO 814799

en Kang, Hangyu

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Tashima, Hideaki

× Tashima, Hideaki

WEKO 814800

en Tashima, Hideaki

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Yamaya, Taiga

× Yamaya, Taiga

WEKO 814801

en Yamaya, Taiga

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抄録
内容記述タイプ Abstract
内容記述 Single photon emission computed tomography (SPECT) has been widely used for preclinical research. High resolution small animal SPECT imaging can be achieved by employing a pinhole or multi-pinhole collimators. However, the useful FOV is narrow compared to that of a parallel-hole collimator. The aim of this study is to optimize the hole diameter of a parallel square-hole collimator for high resolution wholebody small animal SPECT imaging using GATE and STIR software. The small animal SPECT consists of a tungsten parallel square-hole collimator (L= 30 mm), a monolithic GAGG crystal (49 × 49 × 5 mm3), and a PMT (H9500). The SPECT images of an Ultra-Micro hot phantom and NEMA NU-4 phantom were acquired with different square-hole sizes of 0.2, 0.4, 0.6, 0.8, 1.0, and 1.2 mm. The collimator length and septal thickness were kept as 30 mm and 0.1 mm, respectively. The projection image (128 × 128 matrix, pixel size of 0.3828 × 0.3828 mm2) was reconstructed with FBP, and OSMAPOSL algorithms provided by STIR software. With the collimator hole size of 0.4 mm, the spatial resolution of 1.11 mm and sensitivity of 0.001% could be achieved. The contrast recovery coefficient could be improved by using the 0.4 mm hole size and the hot rods (D= 1.35 mm) could be identified clearly. The important message from this work is that the small animal SPECT system can be optimized with the open-source software packages of GATE and STIR. In the future, a prototype small animal SPECT will be developed based on the GATE simulation results.
書誌情報 2018 IEEE Nuclear Science Symposium and Medical Imaging Conference Proceedings (NSS/MIC)

発行日 2018-09
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識別子タイプ URI
関連識別子 https://ieeexplore.ieee.org/document/8824511
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