首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >Rapid quantitative CBF and CMRO2 measurements from a single PET scan with sequential administration of dual 15O-labeled tracers
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Rapid quantitative CBF and CMRO2 measurements from a single PET scan with sequential administration of dual 15O-labeled tracers

机译:通过一次PET扫描快速定量CBF和CMRO2的定量测量并顺序施用双重15O标记的示踪剂

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摘要

Positron emission tomography (PET) with 15O tracers provides essential information in patients with cerebral vascular disorders, such as cerebral blood flow (CBF), oxygen extraction fraction (OEF), and metabolic rate of oxygen (CMRO2). However, most of techniques require an additional C15O scan for compensating cerebral blood volume (CBV). We aimed to establish a technique to calculate all functional images only from a single dynamic PET scan, without losing accuracy or statistical certainties. The technique was an extension of previous dual-tracer autoradiography (DARG) approach, but based on the basis function method (DBFM), thus estimating all functional parametric images from a single session of dynamic scan acquired during the sequential administration of H215O and 15O2. Validity was tested on six monkeys by comparing global OEF by PET with those by arteriovenous blood sampling, and tested feasibility on young healthy subjects. The mean DBFM-derived global OEF was 0.57±0.06 in monkeys, in an agreement with that by the arteriovenous method (0.54±0.06). Image quality was similar and no significant differences were seen from DARG; 3.57%±6.44% and 3.84%±3.42% for CBF, and −2.79%±11.2% and −6.68%±10.5% for CMRO2. A simulation study demonstrated similar error propagation between DBFM and DARG. The DBFM method enables accurate assessment of CBF and CMRO2 without additional CBV scan within significantly shortened examination period, in clinical settings.
机译:带有 15 O示踪剂的正电子发射断层扫描(PET)为患有脑血管疾病的患者提供基本信息,例如脑血流量(CBF),氧提取分数(OEF)和氧代谢率(CMRO2) )。但是,大多数技术都需要额外的C 15 O扫描以补偿脑血容量(CBV)。我们旨在建立一种仅通过单次动态PET扫描即可计算所有功能图像的技术,而不会丢失准确性或统计确定性。该技术是对先前的双示踪放射自显影(DARG)方法的扩展,但是基于基函数方法(DBFM),因此可以从在顺序管理H2期间获得的动态扫描的单个会话中估计所有功能参数图像。 15 O和 15 O2。通过比较PET的整体OEF与动静脉血采样的整体OEF,对六只猴子进行了有效性测试,并测试了年轻健康受试者的可行性。猴子的平均DBFM衍生的整体OEF为0.57±0.06,与动静脉法的平均一致(0.54±0.06)。图像质量相似,与DARG相比无明显差异; CBF为3.57%±6.44%和3.84%±3.42%,CMRO2为-2.79%±11.2%和-6.68%±10.5%。仿真研究表明,DBFM和DARG之间的错误传播类似。在临床环境中,DBFM方法可在不显着缩短检查时间的情况下准确评估CBF和CMRO2,而无需进行额外的CBV扫描。

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