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癌症研究中的高通量小动物PET成像:评估Inveon扫描仪同时对四只小鼠进行成像的能力。

High-throughput small animal PET imaging in cancer research: evaluation of the capability of the Inveon scanner to image four mice simultaneously.

作者信息

Aide Nicolas, Desmonts Cédric, Briand Mélanie, Meryet-Figuiere Mathieu, Poulain Laurent

机构信息

Bioticla Team, EA1772, IFR 146 ICORE, GRECAN, François Baclesse Cancer Centre and Caen University, France.

出版信息

Nucl Med Commun. 2010 Oct;31(10):851-8. doi: 10.1097/MNM.0b013e32833dc61d.

DOI:10.1097/MNM.0b013e32833dc61d
PMID:20683363
Abstract

The aim of this study was to assess the capability of small animal PET (SA-PET) devices to image four mice simultaneously to improve the throughput of SA-PET experiments in cancer research. A customized bed was designed to image up to four mice simultaneously. This bed can easily replace the bed provided by the manufacturer and is connected to an anaesthesia device. A mouse-sized phantom was imaged, mimicking simultaneous imaging of four mice with computation of recovery coefficients and spillover ratios (SORs). In addition, eight mice bearing subcutaneous tumours (human embryonal carcinoma, n=22 tumours) were simultaneously imaged in groups of four on an Inveon SA-PET scanner after injection of F-fluoro-D-glucose. Tumour activity (Bq/ml), as determined by the SA-PET, was compared with ex-vivo counting. For a 5-mm rod, recovery coefficients were 1.15 and 1.05 for a phantom imaged at the central field of view or off-centred on the customized bed, respectively. SORair and SORwater were 0.05 and 0.04 for a phantom imaged alone and 0.15 and 0.06 for a phantom imaged with three additional scatter sources, respectively. Correlation between SA-PET and ex-vivo quantification was good (r=0.91, P<0.0001). The mean ratio of PET quantitative data and ex-vivo counting was equal to 0.9 (95% confidence interval: 0.70-1.09). New generation SA-PET may be suitable for simultaneously imaging four tumour-bearing mice, although improvement in scatter correction efficiency appears necessary. The type of customized bed developed in this study could be easily adapted to other large-bore SA-PET scanners.

摘要

本研究的目的是评估小动物正电子发射断层扫描(SA-PET)设备同时对四只小鼠进行成像的能力,以提高癌症研究中SA-PET实验的通量。设计了一种定制床,可同时对多达四只小鼠进行成像。该床可轻松替换制造商提供的床,并与麻醉设备相连。对一个小鼠尺寸的模型进行成像,模拟对四只小鼠同时成像,并计算恢复系数和溢出率(SOR)。此外,在注射F-氟代-D-葡萄糖后,将八只皮下接种肿瘤(人胚胎癌,n = 22个肿瘤)的小鼠分成四组,在Inveon SA-PET扫描仪上同时成像。将SA-PET测定的肿瘤活性(Bq/ml)与离体计数进行比较。对于一根5毫米的棒,在定制床上中心视野或偏心成像的模型,其恢复系数分别为1.15和1.05。单独成像的模型,空气溢出率和水溢出率分别为0.05和0.04,与另外三个散射源一起成像的模型,空气溢出率和水溢出率分别为0.15和0.06。SA-PET与离体定量之间的相关性良好(r = 0.91,P < 0.0001)。PET定量数据与离体计数的平均比值等于0.9(95%置信区间:0.70 - 1.09)。新一代SA-PET可能适合同时对四只荷瘤小鼠进行成像,不过似乎有必要提高散射校正效率。本研究中开发的定制床类型可轻松适配其他大孔径SA-PET扫描仪。

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