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  1. 原著論文

Quantification of dopamine transporter in human brain using positron emission tomography with 18F-FE-PE2I

https://repo.qst.go.jp/records/47227
https://repo.qst.go.jp/records/47227
a5c77cbf-5eb9-40c3-ac89-7bc6d77914aa
Item type 学術雑誌論文 / Journal Article(1)
公開日 2015-08-06
タイトル
タイトル Quantification of dopamine transporter in human brain using positron emission tomography with 18F-FE-PE2I
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_6501
資源タイプ journal article
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 Sasaki, Takeshi

× Sasaki, Takeshi

WEKO 472205

Sasaki, Takeshi

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Ito, Hiroshi

× Ito, Hiroshi

WEKO 472206

Ito, Hiroshi

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Kimura, Yasuyuki

× Kimura, Yasuyuki

WEKO 472207

Kimura, Yasuyuki

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Arakawa, Ryosuke

× Arakawa, Ryosuke

WEKO 472208

Arakawa, Ryosuke

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Takano, Harumasa

× Takano, Harumasa

WEKO 472209

Takano, Harumasa

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Seki, Chie

× Seki, Chie

WEKO 472210

Seki, Chie

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Kodaka, Fumitoshi

× Kodaka, Fumitoshi

WEKO 472211

Kodaka, Fumitoshi

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Fujie, Saori

× Fujie, Saori

WEKO 472212

Fujie, Saori

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Takahata, Keisuke

× Takahata, Keisuke

WEKO 472213

Takahata, Keisuke

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Nogami, Tsuyoshi

× Nogami, Tsuyoshi

WEKO 472214

Nogami, Tsuyoshi

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Suzuki, Masayuki

× Suzuki, Masayuki

WEKO 472215

Suzuki, Masayuki

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Fujiwara, Hironobu

× Fujiwara, Hironobu

WEKO 472216

Fujiwara, Hironobu

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Takahashi, Hidehiko

× Takahashi, Hidehiko

WEKO 472217

Takahashi, Hidehiko

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Nakao, Ryuji

× Nakao, Ryuji

WEKO 472218

Nakao, Ryuji

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Fukumura, Toshimitsu

× Fukumura, Toshimitsu

WEKO 472219

Fukumura, Toshimitsu

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Halldin, Christer

× Halldin, Christer

WEKO 472220

Halldin, Christer

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Varrone, Andrea

× Varrone, Andrea

WEKO 472221

Varrone, Andrea

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Nishikawa, Touru

× Nishikawa, Touru

WEKO 472222

Nishikawa, Touru

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Suhara, Tetsuya

× Suhara, Tetsuya

WEKO 472223

Suhara, Tetsuya

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佐々木 健至

× 佐々木 健至

WEKO 472224

en 佐々木 健至

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伊藤 浩

× 伊藤 浩

WEKO 472225

en 伊藤 浩

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木村 泰之

× 木村 泰之

WEKO 472226

en 木村 泰之

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荒川 亮介

× 荒川 亮介

WEKO 472227

en 荒川 亮介

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高野 晴成

× 高野 晴成

WEKO 472228

en 高野 晴成

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関 千江

× 関 千江

WEKO 472229

en 関 千江

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小高 文聰

× 小高 文聰

WEKO 472230

en 小高 文聰

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藤江 沙織

× 藤江 沙織

WEKO 472231

en 藤江 沙織

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高畑 圭輔

× 高畑 圭輔

WEKO 472232

en 高畑 圭輔

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野上 毅

× 野上 毅

WEKO 472233

en 野上 毅

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鈴木 雅之

× 鈴木 雅之

WEKO 472234

en 鈴木 雅之

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藤原 広臨

× 藤原 広臨

WEKO 472235

en 藤原 広臨

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高橋 英彦

× 高橋 英彦

WEKO 472236

en 高橋 英彦

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中尾 隆士

× 中尾 隆士

WEKO 472237

en 中尾 隆士

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福村 利光

× 福村 利光

WEKO 472238

en 福村 利光

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ハルディン クリスタ

× ハルディン クリスタ

WEKO 472239

en ハルディン クリスタ

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須原 哲也

× 須原 哲也

WEKO 472240

en 須原 哲也

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抄録
内容記述タイプ Abstract
内容記述 18F-FE-PE2I, 18F-(E)-N-(3-iodoprop-2E-enyl)-2beta-carbofluoroethoxy-3beta-(4-methylphenyl)nortropane, is a new PET radioligand with a high affinity and selectivity for the dopamine transporter (DAT) . In non-human primates, 18F-FE-PE2I showed a faster kinetics and less production of potentially BBB-permeable radiometabolite as compared with 11C-PE2I. The aims of this study were to examine the quantification of DAT using 18F-FE-PE2I and to assess the effect of radiometabolites of 18F-FE-PE2I on the quantification in healthy humans. Methods: A 90-min dynamic PET scan was performed on 10 healthy men after intravenous injection of 18F-FE-PE2I. Kinetic compartment model analysis with a metabolite-corrected arterial input function was carried out. The effect of radiometabolites on the quantification was evaluated by time-stability analyses. The simplified reference tissue model (SRTM) method with the cerebellum as a reference region was evaluated as a non-invasive method of quantification. Results: After the injection of 18F-FE-PE2I, the whole brain radioactivity showed a high peak (~3-5 SUV) and fast washout. The radioactive uptake of 18F-FE-PE2I in the brain was according to the relative density of the DAT (striatum>midbrain>thalamus). The cerebellum showed the lowest uptake. Tissue time-activity curves were well described by the 2-tissue compartment model (TCM) as compared with the 1-TCM for all subjects in all regions. Time stability analysis showed stable estimation of VT with 60-min or longer scan durations, indicating the small effect of radiometabolites. Binding potentials in the striatum and midbrain were well estimated by the SRTM method with modest inter-subject variability. Although SRTM yielded a slight underestimation and overestimation in regions with high and low DAT densities, respectively, binding potentials by the SRTM method were well correlated to the estimates by the indirect kinetic method with 2-TCM. Conclusion: 18F-FE-PE2I is a promising PET radioligand for quantifying DAT. The binding potentials could be reliably estimated in both the striatum and midbrain using both the indirect kinetic and SRTM method with scan duration of 60 min. Although radiometabolites of 18F-FE-PE2I in plasma possibly introduced some effects on the radioactivity in the brain, the effects on estimated binding potential were likely to be small.
書誌情報 Journal of Nuclear Medicine

巻 53, 号 7, p. 1065-73, 発行日 2012-07
ISSN
収録物識別子タイプ ISSN
収録物識別子 0161-5505
PubMed番号
識別子タイプ PMID
関連識別子 22689927
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