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本文引用的文献

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Measuring drug occupancy in the absence of a reference region: the Lassen plot re-visited.在缺乏参照区域的情况下测量药物占有率:重新审视 Lassen 图。
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Effects of citalopram infusion on the serotonin transporter binding of [11C]DASB in healthy controls.西酞普兰输注对健康对照者中[11C]DASB血清素转运体结合的影响。
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Ab initio computational study of positron emission tomography ligands interacting with lipid molecule for the prediction of nonspecific binding.用于预测非特异性结合的正电子发射断层扫描配体与脂质分子相互作用的从头算计算研究。
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Consensus nomenclature for in vivo imaging of reversibly binding radioligands.可逆结合放射性配体体内成像的共识命名法。
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A systematic comparison of kinetic modelling methods generating parametric maps for [(11)C]-(R)-PK11195.对生成[(11)C]-(R)-PK11195参数图的动力学建模方法的系统比较。
Neuroimage. 2007 May 15;36(1):28-37. doi: 10.1016/j.neuroimage.2007.02.017. Epub 2007 Feb 21.
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Reference and target region modeling of [11C]-(R)-PK11195 brain studies.[11C]-(R)-PK11195脑研究的参考和靶区建模
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Correction of head movement on PET studies: comparison of methods.PET研究中头部运动的校正:方法比较
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8
Measurement of serotonin 5-HT1A receptor binding using positron emission tomography and [carbonyl-(11)C]WAY-100635-considerations on the validity of cerebellum as a reference region.使用正电子发射断层扫描和[羰基-(11)C]WAY-100635测量5-羟色胺5-HT1A受体结合——关于将小脑作为参考区域的有效性的思考
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9
Acute occupancy of brain serotonin transporter by sertraline as measured by [11C]DASB and positron emission tomography.通过[11C]DASB和正电子发射断层扫描测量舍曲林对脑血清素转运蛋白的急性占据情况。
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Regional distribution of serotonin transporter protein in postmortem human brain: is the cerebellum a SERT-free brain region?5-羟色胺转运蛋白在人死后大脑中的区域分布:小脑是一个无5-羟色胺转运蛋白的脑区吗?
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使用具有可置换分数的参考区域对配体 PET 研究进行定量:以 [(11)C]-DASB 为例用于占有率研究。

Quantification of ligand PET studies using a reference region with a displaceable fraction: application to occupancy studies with [(11)C]-DASB as an example.

机构信息

MRC Clinical Sciences Centre, Hammersmith Hospital, London, UK.

出版信息

J Cereb Blood Flow Metab. 2012 Jan;32(1):70-80. doi: 10.1038/jcbfm.2011.108. Epub 2011 Aug 3.

DOI:10.1038/jcbfm.2011.108
PMID:21811290
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3323353/
Abstract

This paper aims to build novel methodology for the use of a reference region with specific binding for the quantification of brain studies with radioligands and positron emission tomography (PET). In particular: (1) we introduce a definition of binding potential BP(D)=DVR-1 where DVR is the volume of distribution relative to a reference tissue that contains ligand in specifically bound form, (2) we validate a numerical methodology, rank-shaping regularization of exponential spectral analysis (RS-ESA), for the calculation of BP(D) that can cope with a reference region with specific bound ligand, (3) we demonstrate the use of RS-ESA for the accurate estimation of drug occupancies with the use of correction factors to account for the specific binding in the reference. [(11)C]-DASB with cerebellum as a reference was chosen as an example to validate the methodology. Two data sets were used; four normal subjects scanned after infusion of citalopram or placebo and further six test-retest data sets. In the drug occupancy study, the use of RS-ESA with cerebellar input plus corrections produced estimates of occupancy very close the ones obtained with plasma input. Test-retest results demonstrated a tight linear relationship between BP(D) calculated either with plasma or with a reference input and high reproducibility.

摘要

本文旨在为使用具有特定结合的参比区建立新的方法,以定量研究放射性配体和正电子发射断层扫描(PET)的脑研究。具体而言:(1)我们引入了结合潜力 BP(D)=DVR-1 的定义,其中 DVR 是相对于包含特定结合配体的参比组织的分布体积;(2)我们验证了一种数值方法,即指数谱分析的秩形正则化(RS-ESA),用于计算 BP(D),该方法可用于具有特定结合配体的参比区;(3)我们展示了使用 RS-ESA 结合校正因子准确估计药物占有率的方法,以考虑参比区中特定结合的影响。选择[(11)C]-DASB 作为小脑参比作为示例来验证该方法。使用了两个数据集;四个正常受试者在给予西酞普兰或安慰剂后进行扫描,进一步使用了六个测试-重测数据集。在药物占有率研究中,使用小脑输入加校正的 RS-ESA 产生的占有率估计值与使用血浆输入非常接近。测试-重测结果表明,无论是使用血浆还是参考输入计算的 BP(D)之间存在紧密的线性关系,并且具有很高的重现性。