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一种通过PET/MRI混合成像定量测定脑氧代谢率的无创方法:在猪模型中的验证

A Noninvasive Method for Quantifying Cerebral Metabolic Rate of Oxygen by Hybrid PET/MRI: Validation in a Porcine Model.

作者信息

Narciso Lucas, Ssali Tracy, Liu Linshan, Biernaski Heather, Butler John, Morrison Laura, Hadway Jennifer, Corsaut Jeffrey, Hicks Justin W, Langham Michael C, Wehrli Felix W, Iida Hidehiro, St Lawrence Keith

机构信息

Lawson Health Research Institute, Canada.

University of Pennsylvania Perelman School of Medicine, United States.

出版信息

J Nucl Med. 2021 Mar 19;62(12):1789-96. doi: 10.2967/jnumed.120.260521.

Abstract

The gold standard for imaging the cerebral metabolic rate of oxygen (CMRO) is positron emission tomography (PET); however, it is an invasive and complex procedure that also requires correction for recirculating O-HO and the blood-borne activity. We propose a noninvasive reference-based hybrid PET/magnetic resonance imaging (MRI) method that uses functional MRI techniques to calibrate O-O-PET data. Here, PET/MR imaging of oxidative metabolism (PMROx) was validated in an animal model by comparison to PET-alone measurements. Additionally, we investigated if the MRI-perfusion technique arterial spin labelling (ASL) could be used to further simplify PMROx by replacing O-HO-PET, and if the PMROx was sensitive to anesthetics-induced changes in metabolism. O-HO and O-O PET data were acquired in a hybrid PET/MR scanner (3 T Siemens Biograph mMR), together with simultaneous functional MRI (OxFlow and ASL), from juvenile pigs ( = 9). Animals were anesthetized with 3% isoflurane and 6 mL/kg/h propofol for the validation experiments and arterial sampling was performed for PET-alone measurements. PMROx estimates were obtained using whole-brain (WB) CMRO from OxFlow and local cerebral blood flow (CBF) from either noninvasive O-HO-PET or ASL (PMROxASL). Changes in metabolism were investigated by increasing the propofol infusion to 20 mL/kg/h. Good agreement and correlation were observed between regional CMRO measurements from PMROx and PET-alone. No significant differences were found between OxFlow and PET-only measurements of WB oxygen extraction fraction (0.30 ± 0.09 and 0.31 ± 0.09) and CBF (54.1 ± 16.7 and 56.6 ± 21.0 mL/100 g/min), or between PMROx and PET-only CMRO estimates (1.89 ± 0.16 and 1.81 ± 0.10 mLO/100 g/min). Moreover, PMROx and PMROxASL were sensitive to propofol-induced reduction in CMRO This study provides initial validation of a noninvasive PET/MRI technique that circumvents many of the complexities of PET CMRO imaging. PMROx does not require arterial sampling and has the potential to reduce PET imaging to O-O only; however, future validation involving human participants are required.

摘要

用于成像脑氧代谢率(CMRO)的金标准是正电子发射断层扫描(PET);然而,这是一种侵入性且复杂的程序,还需要对再循环的O-HO和血源性活性进行校正。我们提出了一种基于参考的非侵入性PET/磁共振成像(MRI)方法,该方法使用功能MRI技术来校准O-O-PET数据。在此,通过与单独PET测量结果进行比较,在动物模型中验证了氧化代谢的PET/MR成像(PMROx)。此外,我们研究了MRI灌注技术动脉自旋标记(ASL)是否可用于通过替代O-HO-PET进一步简化PMROx,以及PMROx是否对麻醉剂引起的代谢变化敏感。在一台混合PET/MR扫描仪(3T西门子Biograph mMR)中,从幼年猪(n = 9)获取O-HO和O-O PET数据,同时进行功能MRI(OxFlow和ASL)。在验证实验中,动物用3%异氟烷和6 mL/kg/h丙泊酚麻醉,并进行动脉采样以进行单独PET测量。使用来自OxFlow的全脑(WB)CMRO和来自非侵入性O-HO-PET或ASL(PMROxASL)的局部脑血流量(CBF)获得PMROx估计值。通过将丙泊酚输注速率增加到20 mL/kg/h来研究代谢变化。在PMROx和单独PET的区域CMRO测量之间观察到良好的一致性和相关性。在WB氧摄取分数(0.30±0.09和0.31±0.09)和CBF(54.1±16.7和56.6±21.0 mL/100 g/min)的OxFlow和仅PET测量之间,或在PMROx和仅PET的CMRO估计值(1.89±0.16和1.81±0.10 mLO/100 g/min)之间未发现显著差异。此外,PMROx和PMROxASL对丙泊酚引起的CMRO降低敏感。本研究为一种非侵入性PET/MRI技术提供了初步验证,该技术规避了PET CMRO成像的许多复杂性。PMROx不需要动脉采样,并且有可能将PET成像仅减少到O-O;然而,未来需要涉及人类参与者的验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71c3/8612192/28f31dccc675/jnm260521absf1.jpg

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