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A mouse brain PET prototype with a staggered 3-layer DOI detector

https://repo.qst.go.jp/records/83031
https://repo.qst.go.jp/records/83031
d7d8242a-eaf5-4fa8-8c2f-4fae31bd2fbe
Item type 会議発表用資料 / Presentation(1)
公開日 2021-06-25
タイトル
タイトル A mouse brain PET prototype with a staggered 3-layer DOI detector
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_c94f
資源タイプ conference object
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 Kang, Hangyu

× Kang, Hangyu

WEKO 995235

Kang, Hangyu

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Kang, Hangyu

× Kang, Hangyu

WEKO 995236

en Kang, Hangyu

Search repository
抄録
内容記述タイプ Abstract
内容記述 Objectives: Development of a mouse brain PET prototype with a staggered 3-layer DOI detector using a 1 mm crystal pitch for realizing a 0.7 mm resolution.
Methods: The proposed mouse brain PET had a 53 mm inner diameter and 11 mm axial FOV. The PET scanner consisted of 16 DOI detectors each of which had a 3-layer staggered 3-layer LYSO crystal array. The LYSO crystal array had the pixel pitch of 1 mm and total thickness of 15 mm. The LYSO crystal array was optically coupled to a 4×4 SiPM (Hamamatsu, S14161-3050HS-04, Japan) array with a pixel pitch of 3.2 mm. The SiPM anode signals were multiplexed using a resistive network and then digitized by the Hamamatsu DAQ with an integration time of 250 ns. The performance of the PET scanner was evaluated by using a 22Na point source (D=0.25 mm) and a resolution phantom. In vivo mouse brain and bone imaging studies were performed for 60 min with the FDG and 89Zr-oxalate radiopharmaceuticals, respectively.
Results: The measured spatial resolutions at the center and 15 mm radial offset were 0.67 mm, and 1.56 mm for filtered-back-projection (FBP), and 0.50 mm, and 1.16 mm for ordered-subset-expectation-maximization (OSEM), respectively. The peak absolute sensitivity was 0.76% with an energy window of 400-600 keV. The 0.8 mm rods were resolved clearly in the phantom study. The mouse brain structures such as cortex and thalamus were identified clearly with the FDG PET scan. The mouse skull structure can be delineated clearly with the 89Zr PET scan.
Conclusions: In conclusion, we developed a high-resolution and high-sensitivity mouse brain PET prototype with 3-layer DOI detectors. We plan to extend the axial FOV up to 50 mm to increase the sensitivity significantly
会議概要(会議名, 開催地, 会期, 主催者等)
内容記述タイプ Other
内容記述 Society of Nuclear Medicine and Molecular Imaging 2021 Virtual Annual Meeting
発表年月日
日付 2021-06-13
日付タイプ Issued
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