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首页> 外文期刊>Physics in medicine and biology. >Validity of using a 3-dimensional PET scanner during inhalation of 15O-labeled oxygen for quantitative assessment of regional metabolic rate of oxygen in man
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Validity of using a 3-dimensional PET scanner during inhalation of 15O-labeled oxygen for quantitative assessment of regional metabolic rate of oxygen in man

机译:吸入15O标记的氧气以定量评估人体局部氧气代谢率时使用3维PET扫描仪的有效性

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Use of 15O labeled oxygen (15O2) and positron emission tomography (PET) allows quantitative assessment of the regional metabolic rate of oxygen (CMRO2) in vivo, which is essential to understanding the pathological status of patients with cerebral vascular and neurological disorders. The method has, however, been challenging, when a 3D PET scanner is employed, largely attributed to the presence of gaseous radioactivity in the trachea and the inhalation system, which results in a large amount of scatter and random events in the PET assessment. The present study was intended to evaluate the adequacy of using a recently available commercial 3D PET scanner in the assessment of regional cerebral radioactivity distribution during an inhalation of 15O2. Systematic experiments were carried out on a brain phantom. Experiments were also performed on a healthy volunteer following a recently developed protocol for simultaneous assessment of CMRO2 and cerebral blood flow, which involves sequential administration of 15O2 and C15O2. A particular intention was to evaluate the adequacy of the scatter-correction procedures. The phantom experiment demonstrated that errors were within 3% at the practically maximum radioactivity in the face mask, with the greatest radioactivity in the lung. The volunteer experiment demonstrated that the counting rate was at peak during the 15O gas inhalation period, within a verified range. Tomographic images represented good quality over the entire FOV, including the lower part of the cerebral structures and the carotid artery regions. The scatter-correction procedures appeared to be important, particularly in the process to compensate for the scatter originating outside the FOV. Reconstructed images dramatically changed if the correction was carried out using inappropriate procedures. This study demonstrated that accurate reconstruction could be obtained when the scatter compensation was appropriately carried out. This study also suggested the feasibility of using a state-of-the-art 3D PET scanner in the quantitative PET imaging during inhalation of 15O labeled oxygen.
机译:使用15O标记的氧(15O2)和正电子发射断层扫描(PET)可以定量评估体内的区域氧代谢率(CMRO2),这对于了解脑血管和神经系统疾病患者的病理状态至关重要。然而,当采用3D PET扫描仪时,该方法具有挑战性,这主要归因于气管和吸入系统中存在气态放射性,这在PET评估中导致大量散布和随机事件。本研究旨在评估在吸入15O2期间使用最近可用的商用3D PET扫描仪评估局部脑放射性分布的适当性。在脑模型上进行了系统的实验。根据最近开发的同时评估CMRO2和脑血流量的方案,还对健康志愿者进行了实验,该方案涉及顺序给药15O2和C15O2。一个特别的意图是评估散射校正程序的适当性。幻像实验表明,在面罩中实际上最大的放射性下,肺部的最大放射性误差在3%以内。自愿实验表明,在15O气体吸入期间,计数率在验证范围内达到峰值。断层扫描图像代表整个FOV(包括大脑结构的下部和颈动脉区域)的良好质量。散射校正程序似乎很重要,尤其是在补偿源自FOV之外的散射的过程中。如果使用不适当的程序进行校正,则重建的图像将发生巨大变化。这项研究表明,适当地进行散射补偿可以得到准确的重建。这项研究还提出了在吸入15O标记的氧气期间在定量PET成像中使用最先进的3D PET扫描仪的可行性。

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