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Initial clinical test of the first Helmet-Chin PET prototype for highly sensitive brain imaging

https://repo.qst.go.jp/records/66063
https://repo.qst.go.jp/records/66063
1ce4645b-e04c-41ce-bfde-4140fc3fa468
Item type 会議発表用資料 / Presentation(1)
公開日 2016-07-01
タイトル
タイトル Initial clinical test of the first Helmet-Chin PET prototype for highly sensitive brain imaging
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 田島, 英朗

× 田島, 英朗

WEKO 776247

田島, 英朗

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吉田, 英治

× 吉田, 英治

WEKO 776248

吉田, 英治

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錦戸, 文彦

× 錦戸, 文彦

WEKO 776249

錦戸, 文彦

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脇坂, 秀克

× 脇坂, 秀克

WEKO 776250

脇坂, 秀克

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岩男, 悠真

× 岩男, 悠真

WEKO 776251

岩男, 悠真

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Abdella Mohammednur, Ahmed

× Abdella Mohammednur, Ahmed

WEKO 776252

Abdella Mohammednur, Ahmed

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Mohammadi, Akram

× Mohammadi, Akram

WEKO 776253

Mohammadi, Akram

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木村, 泰之

× 木村, 泰之

WEKO 776254

木村, 泰之

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須原, 哲也

× 須原, 哲也

WEKO 776255

須原, 哲也

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藤林, 康久

× 藤林, 康久

WEKO 776256

藤林, 康久

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田沢, 周作

× 田沢, 周作

WEKO 776257

田沢, 周作

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山谷, 泰賀

× 山谷, 泰賀

WEKO 776258

山谷, 泰賀

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Tashima, Hideaki

× Tashima, Hideaki

WEKO 776259

en Tashima, Hideaki

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Yoshida, Eiji

× Yoshida, Eiji

WEKO 776260

en Yoshida, Eiji

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Nishikido, Fumihiko

× Nishikido, Fumihiko

WEKO 776261

en Nishikido, Fumihiko

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Wakizaka, Hidekatsu

× Wakizaka, Hidekatsu

WEKO 776262

en Wakizaka, Hidekatsu

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Iwao, Yuma

× Iwao, Yuma

WEKO 776263

en Iwao, Yuma

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Ahmed, Abdella

× Ahmed, Abdella

WEKO 776264

en Ahmed, Abdella

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Mohammadi, Akram

× Mohammadi, Akram

WEKO 776265

en Mohammadi, Akram

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Kimura, Yasuyuki

× Kimura, Yasuyuki

WEKO 776266

en Kimura, Yasuyuki

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Suhara, Tetsuya

× Suhara, Tetsuya

WEKO 776267

en Suhara, Tetsuya

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Fujibayashi, Yasuhisa

× Fujibayashi, Yasuhisa

WEKO 776268

en Fujibayashi, Yasuhisa

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Tazawa, Shusaku

× Tazawa, Shusaku

WEKO 776269

en Tazawa, Shusaku

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Yamaya, Taiga

× Yamaya, Taiga

WEKO 776270

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抄録
内容記述タイプ Abstract
内容記述 Objectives:
With progress in clinical studies on recently developed diagnostic medicine approaches for dementia, there is an emerging demand for dedicated brain PET scanners to provide early diagnosis of the disease. Therefore, we have proposed the Helmet-Chin PET, a novel geometry for highly sensitive brain imaging based on a hemispheric arrangement of detectors. For a proof-of-concept, last year we developed the first prototype using 4-layered depth-of-interaction (DOI) detectors. Following successful realization of phantom imaging, we conducted the first clinical test which we describe in this paper.

Methods:
The Helmet-Chin PET prototype was developed using 54 DOI detectors, each of which consisted of 16×16×4 Zr-doped GSO crystals (2.8×2.8×7.5 mm<sup>3</sup>) and a high sensitivity 64-channel flat-panel photomultiplier tube. In the prototype, 47 detectors were used to form a hemisphere of 25 cm inner diameter and 50 cm outer diameter, and 7 detectors were used for the chin detector. First of all, we compared sensitivity for the brain region with a commercial scanner to determine injection activity. We measured the count rate performance of the prototype and that of a whole-body PET, Biograph mCT Flow 64-4R PET/CT system (Siemens Medical Solutions USA, Inc.). The mCT consisted of four detector rings 84 cm in diameter, having 192 detectors, each of which consisted of 13×13 LSO crystals (4×4×20 mm<sup>3</sup>). We made a pool phantom with a shape of hemisphere with inner diameter of 20 cm filled with <sup>18</sup>F solution. The phantom was measured with the prototype and the mCT for 5 min. Following the sensitivity assessment, we conducted the initial clinical test using the prototype. A healthy volunteer was measured for 18 min beginning 85 min after <sup>18</sup>F-FDG injection of 70 MBq. For attenuation correction, the separately scanned CT image was registered.

Results:
The measured sensitivity for the brain region was 17.4 kcps/MBq for the Helmet-Chin PET prototype and 9.3 kcps/MBq for the mCT, where the energy windows were 400-600 keV and 435-650 keV, respectively. The sensitivity of the Helmet-Chin PET for the brain region was almost twice as high as that of the mCT, even though the number of detectors was less than 30% that of the mCT. For the initial clinical test, we could obtain a clear image of the brain with low radioactivity injection.

Conclusions:
Our initial clinical test using the first prototype showed that the Helmet-Chin PET has promising performance for highly sensitive brain imaging.
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 SNMMI 2016
発表年月日
日付 2016-06-13
日付タイプ Issued
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