Alstrup Aage Kristian Olsen, Simonsen Mette, Hansen Kim Vang, Real Caroline C
Department of Nuclear Medicine & PET, Aarhus University Hospital, 8200 Aarhus, Denmark.
Tomography. 2025 Jan 3;11(1):4. doi: 10.3390/tomography11010004.
Anesthesia can significantly impact positron emission tomography (PET) neuroimaging in preclinical studies. Therefore, understanding these effects is crucial for accurate interpretation of the results. In this experiment, we investigate the effect of [F]-labeled glucose analog fluorodeoxyglucose ([F]FDG) uptake in the brains of rats anesthetized with two commonly used anesthetics for rodents: isoflurane, an inhalation anesthetic, and Hypnorm-Dormicum, a combination injection anesthetic.
Female adult Sprague Dawley rats were randomly assigned to one of two anesthesia groups: isoflurane or Hypnorm-Dormicum. The rats were submitted to dynamic [F]FDG PET scan. The whole brain [F]FDG standard uptake value (SUV) and the brain voxel-based analysis were performed.
The dynamic [F]FDG data revealed that the brain SUV was 38% lower in the isoflurane group after 40 min of image (2.085 ± 0.3563 vs. 3.369 ± 0.5577, = 0.0008). In voxel-based analysis between groups, the maps collaborate with SUV data, revealing a reduction in [F]FDG uptake in the isoflurane group, primarily in the cortical regions, with additional small increases observed in the midbrain and cerebellum.
The observed differences in [F]FDG uptake in the brain may be attributed to variations in metabolic activity. These results underscore the necessity for careful consideration of anesthetic choice and its impact on neuroimaging outcomes in future research.
在临床前研究中,麻醉可对正电子发射断层扫描(PET)神经成像产生显著影响。因此,了解这些影响对于准确解释结果至关重要。在本实验中,我们研究了用两种常用的啮齿动物麻醉剂对大鼠进行麻醉后,[F]标记的葡萄糖类似物氟脱氧葡萄糖([F]FDG)在大鼠脑中摄取的影响,这两种麻醉剂分别为:吸入麻醉剂异氟烷和注射用复合麻醉剂海乐妙-多美康。
成年雌性Sprague Dawley大鼠被随机分配到两个麻醉组之一:异氟烷组或海乐妙-多美康组。对大鼠进行动态[F]FDG PET扫描。进行全脑[F]FDG标准摄取值(SUV)和基于脑体素的分析。
动态[F]FDG数据显示,在成像40分钟后,异氟烷组的脑SUV降低了38%(2.085±0.3563对3.369±0.5577,P = 0.0008)。在组间基于体素的分析中,图谱与SUV数据一致,显示异氟烷组[F]FDG摄取减少,主要在皮质区域,中脑和小脑有额外的小幅增加。
观察到的脑内[F]FDG摄取差异可能归因于代谢活动的变化。这些结果强调了在未来研究中仔细考虑麻醉选择及其对神经成像结果影响的必要性。