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Simulation study of real-time tumor tracking by the OpenPET using 4D XCAT phantom with 18F-FDG distribution

https://repo.qst.go.jp/records/70814
https://repo.qst.go.jp/records/70814
348ba9b0-a878-4fe2-93d8-650be12c21c1
Item type 会議発表用資料 / Presentation(1)
公開日 2012-06-29
タイトル
タイトル Simulation study of real-time tumor tracking by the OpenPET using 4D XCAT phantom with 18F-FDG distribution
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 Tashima, Hideaki

× Tashima, Hideaki

WEKO 695730

Tashima, Hideaki

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Yoshida, Eiji

× Yoshida, Eiji

WEKO 695731

Yoshida, Eiji

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Shinaji, Tetsuya

× Shinaji, Tetsuya

WEKO 695732

Shinaji, Tetsuya

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Hirano, Yoshiyuki

× Hirano, Yoshiyuki

WEKO 695733

Hirano, Yoshiyuki

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Kinouchi, Shoko

× Kinouchi, Shoko

WEKO 695734

Kinouchi, Shoko

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Nishikido, Fumihiko

× Nishikido, Fumihiko

WEKO 695735

Nishikido, Fumihiko

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Suga, Mikio

× Suga, Mikio

WEKO 695736

Suga, Mikio

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Haneishi, Hideaki

× Haneishi, Hideaki

WEKO 695737

Haneishi, Hideaki

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Ito, Hiroshi

× Ito, Hiroshi

WEKO 695738

Ito, Hiroshi

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Yamaya, Taiga

× Yamaya, Taiga

WEKO 695739

Yamaya, Taiga

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田島 英朗

× 田島 英朗

WEKO 695740

en 田島 英朗

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吉田 英治

× 吉田 英治

WEKO 695741

en 吉田 英治

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品地 哲弥

× 品地 哲弥

WEKO 695742

en 品地 哲弥

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平野 祥之

× 平野 祥之

WEKO 695743

en 平野 祥之

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木内 尚子

× 木内 尚子

WEKO 695744

en 木内 尚子

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錦戸 文彦

× 錦戸 文彦

WEKO 695745

en 錦戸 文彦

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菅 幹生

× 菅 幹生

WEKO 695746

en 菅 幹生

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羽石 秀昭

× 羽石 秀昭

WEKO 695747

en 羽石 秀昭

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伊藤 浩

× 伊藤 浩

WEKO 695748

en 伊藤 浩

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山谷 泰賀

× 山谷 泰賀

WEKO 695749

en 山谷 泰賀

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抄録
内容記述タイプ Abstract
内容記述 Objectives: We are developing the OpenPET which can provide an accessible open space to the patient during PET scanning. In addition, we have proposed the real-time imaging system for the OpenPET toward PET-guided tumor-tracking radiation therapy. Although we demonstrated its tracking ability using a point source and a small OpenPET prototype, tumor tracking in human body is still challenging task because of its background activity when we use the 18F-FDG which is the best available tracer for tumors. In this study, we access conditions that the tumor tracking is feasible in human body by using the 4D XCAT phantom which is a realistic 4D human whole body phantom.
Methods: For generating 4D XCAT phantom with appropriate 18F-FDG distribution, SUVs were assigned to normal organs from literature. Spherical lesion with the SUV of 5 was placed at the right upper lung moving with respiratory cycle of 5 s. 4D Image was generated with the frame rate of 2 fps. Then, projection data of each frame were generated by forward projection with the system matrix including detector response functions of the human-sized OpenPET geometry having a gap of 300 mm. Detector blocks were 16x16x4 arrays of 3.0x3.0x7.5 mm3 scintillators. Attenuation of the body was included in the simulation, but scattering was ignored. Assuming the 18F-FDG injection of 370 MBq and time frame of 0.5 s and taking the system sensitivity into account, total event count in each projection data was adjusted to 500 k counts and then Poisson noise was added. 4D image was reconstructed frame by frame using the 3D OSEM method. Tumor position was extracted from the reconstructed 4D image by a pattern matching method.
Results: Tumor was moved 17 mm at the maximum with respiratory motion. Average error of the tumor position extracted from the reconstructed image was 2.7 mm, which was similar to the PET resolution.
Conclusions: We showed that tumor tracking by the OpenPET is feasible even in a realistic case.
Research Support: This work was partially supported by the Grant-in-Aid for Scientists Research (A) of Kakenhi (22240065) and by a research grant from the Association for Nuclear Technology in Medicine.
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 SNM 2012 Annual Meeting
発表年月日
日付 2012-06-13
日付タイプ Issued
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