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Quantitative analysis of dopamine transporters in human brain using [11C]PE2I and positron emission tomography: evaluation of reference tissue models

https://repo.qst.go.jp/records/70647
https://repo.qst.go.jp/records/70647
23df9526-2db5-4efb-8a4e-889e3defeab5
Item type 会議発表用資料 / Presentation(1)
公開日 2011-11-28
タイトル
タイトル Quantitative analysis of dopamine transporters in human brain using [11C]PE2I and positron emission tomography: evaluation of reference tissue models
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 Seki, Chie

× Seki, Chie

WEKO 693936

Seki, Chie

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Ito, Hiroshi

× Ito, Hiroshi

WEKO 693937

Ito, Hiroshi

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Ikoma, Youko

× Ikoma, Youko

WEKO 693938

Ikoma, Youko

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Shidahara, Miho

× Shidahara, Miho

WEKO 693939

Shidahara, Miho

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Kimura, Yuichi

× Kimura, Yuichi

WEKO 693940

Kimura, Yuichi

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Kanno, Iwao

× Kanno, Iwao

WEKO 693941

Kanno, Iwao

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Suhara, Tetsuya

× Suhara, Tetsuya

WEKO 693942

Suhara, Tetsuya

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et.al

× et.al

WEKO 693943

et.al

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関 千江

× 関 千江

WEKO 693944

en 関 千江

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伊藤 浩

× 伊藤 浩

WEKO 693945

en 伊藤 浩

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生駒 洋子

× 生駒 洋子

WEKO 693946

en 生駒 洋子

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志田原 美保

× 志田原 美保

WEKO 693947

en 志田原 美保

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木村 裕一

× 木村 裕一

WEKO 693948

en 木村 裕一

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菅野 巖

× 菅野 巖

WEKO 693949

en 菅野 巖

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須原 哲也

× 須原 哲也

WEKO 693950

en 須原 哲也

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抄録
内容記述タイプ Abstract
内容記述 OBJECTIVE: Dopamine transporter (DAT) is a reuptake carrier of dopamine at presynapse that regulates dopaminergic neural transmission. [(11)C]PE2I is a cocaine analog developed as a potent positron emission tomography (PET) ligand for DAT with high selectivity. The aim of this study was to evaluate the applicability of quantification methods using reference tissue models for [(11)C]PE2I.
METHODS: Dynamic PET scans were performed in 6 young healthy male volunteers after an intravenous bolus injection of [(11)C]PE2I. Metabolite-corrected arterial plasma-input functions were obtained. Compartment model analysis and plasma-input Logan analysis were performed to determine the kinetic parameters and distribution volume (V (T)). The distribution volume ratio (DVR) was calculated as the ratio of V (T) in the cerebral region to that in the cerebellum. DVRs were also determined by the original multilinear reference tissue model method (MRTMo) and the simplified reference tissue model method (SRTM), comparing the results with those obtained from graphical analysis using arterial input function. To estimate errors in DVR calculated using the reference tissue model, a simulation study that focused on cerebellar kinetics and scan duration was performed.
RESULTS: The highest [(11)C]PE2I binding was observed in the striatum, followed by the midbrain and thalamus. The 2-tissue model was preferable to the 1-tissue model for describing the [(11)C]PE2I kinetics in the cerebellum. Both the measured and 90-min simulated data showed that reference tissue models caused an underestimation of DVR in the striatum. The simulation showed that 90-min scan duration was insufficient when cerebellar kinetics was described as a 1-tissue model. Nevertheless, DVR values determined by MRTMo and SRTM were in good agreement with those by the graphical approach in other lower binding regions.
CONCLUSION: Due to the [(11)C]PE2I kinetics in the cerebellum and limited scan duration for (11)C, MRTMo and SRTM underestimated the striatal DVR. Despite this limitation, the present study demonstrated the applicability of reference tissue models. Since DAT in the midbrain and thalamus is of interest in the pathophysiology of neuropsychiatric disease, this noninvasive quantitative analysis will be useful for clinical investigations.
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 第51回日本核医学会学術集会
発表年月日
日付 2011-10-29
日付タイプ Issued
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