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A Proposal of Open PET Geometies

https://repo.qst.go.jp/records/69158
https://repo.qst.go.jp/records/69158
94677480-3cf2-416b-95fe-5f87e04cd488
Item type 会議発表用資料 / Presentation(1)
公開日 2007-11-09
タイトル
タイトル A Proposal of Open PET Geometies
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 Yamaya, Taiga

× Yamaya, Taiga

WEKO 678631

Yamaya, Taiga

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Inaniwa, Taku

× Inaniwa, Taku

WEKO 678632

Inaniwa, Taku

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Minohara, Shinichi

× Minohara, Shinichi

WEKO 678633

Minohara, Shinichi

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Yoshida, Eiji

× Yoshida, Eiji

WEKO 678634

Yoshida, Eiji

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Inadama, Naoko

× Inadama, Naoko

WEKO 678635

Inadama, Naoko

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Nishikido, Fumihiko

× Nishikido, Fumihiko

WEKO 678636

Nishikido, Fumihiko

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Shibuya, Kengo

× Shibuya, Kengo

WEKO 678637

Shibuya, Kengo

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Lam, ChihFung

× Lam, ChihFung

WEKO 678638

Lam, ChihFung

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Murayama, Hideo

× Murayama, Hideo

WEKO 678639

Murayama, Hideo

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山谷 泰賀

× 山谷 泰賀

WEKO 678640

en 山谷 泰賀

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稲庭 拓

× 稲庭 拓

WEKO 678641

en 稲庭 拓

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蓑原 伸一

× 蓑原 伸一

WEKO 678642

en 蓑原 伸一

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吉田 英治

× 吉田 英治

WEKO 678643

en 吉田 英治

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稲玉 直子

× 稲玉 直子

WEKO 678644

en 稲玉 直子

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錦戸 文彦

× 錦戸 文彦

WEKO 678645

en 錦戸 文彦

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澁谷 憲悟

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WEKO 678646

en 澁谷 憲悟

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Lam ChihFung

× Lam ChihFung

WEKO 678647

en Lam ChihFung

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村山 秀雄

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WEKO 678648

en 村山 秀雄

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抄録
内容記述タイプ Abstract
内容記述 A long patient port of PET scanner tends to put stress on patients, especially patients with claustrophobia. It also prevents doctors and technicians from taking care of patients during scanning. In this paper, we propose an open PET geometry, which consists of two axially separated detector rings. Long and continuous field-of-view (FOV) including 360-degree opened gap space between two detector-rings can be visualized by 3D image reconstruction from all the possible lines-of-response (LORs). Based on the redundant characteristics of 3D PET, oblique LORs between two separated detector-rings compensate the missing LORs in the gap. In order to evaluate imaging performance of the open PET geometries, we simulated dual HR+ scanner (ring diameter=827mm, axial length=153mm x 2) separated by a variable gap. 3D OS-EM with geometrical system modeling was applied. The gap of 153mm was the maximum limit for the simulated scanner to have axially continuous FOV of 459mm though the maximum diameter of FOV at the central slice was limited to 414mm. The results show that high resolution images can be obtained with the gap up to 153mm, though missing LORs increase a little but almost invisible artifacts. We also tested open PET geometries using experimental data obtained by the jPET-D4, a prototype brain scanner. The jPET-D4 has 5 rings of 24 detector blocks. Therefore we simulated open PET data with a gap of 65mm by eliminating 1 block-ring from experimental FDG-PET data. Although some artifacts were seen at both ends of the gap, very similar images were obtained with and without the gap. The open PET geometry is expected to enable in-beam PET, which is a method for an <i>in situ</i> monitoring of charged particle therapy, by letting beams though the gap. The open PET geometry also enables a simultaneous PET/CT scanner to measure the same PET FOV as the CT FOV at the same time, in contrast to conventional PET/CT scanners where each FOVs are separated by several tens centimeters.
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 IEEE 2007 Nuclear Science Symposium and Medical Imaging Conference
発表年月日
日付 2007-11-03
日付タイプ Issued
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