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评估 [C]UCB-J 和 [F]SynVesT-1 PET 示踪剂的输注方法和简化的突触密度定量。

Evaluating infusion methods and simplified quantification of synaptic density with [C]UCB-J and [F]SynVesT-1 PET.

机构信息

Department of Psychiatry, Yale School of Medicine, New Haven, CT, USA.

Department of Radiology and Biomedical Imaging, Yale School of Medicine, New Haven, CT, USA.

出版信息

J Cereb Blood Flow Metab. 2023 Dec;43(12):2120-2129. doi: 10.1177/0271678X231200423. Epub 2023 Sep 5.

Abstract

For some positron emission tomography studies, radiotracer is administered as bolus plus continuous infusion (B/I) to achieve a state of equilibrium. This approach can reduce scanning time and simplify data analysis; however, the method must be validated and optimized for each tracer. This study aimed to validate a B/I method for quantification of synaptic density using radiotracers which target the synaptic vesicle glycoprotein 2 A: [C]UCB-J and [F]SynVesT-1. Observed mean standardized uptake values (SUV) in target tissue relative to that in plasma (/) or a reference tissue (SUVR-1) were calculated for 30-minute intervals across 120 or 150-minute dynamic scans and compared against one-tissue compartment (1TC) model estimates of volume of distribution () and binding potential (), respectively. We were unable to reliably achieve a state of equilibrium with [C]UCB-J, and all 30-minute windows yielded overly large bias and/or variability for / and SUVR-1. With [F]SynVesT-1, a 30-minute scan 90-120 minutes post-injection yielded / and SUVR-1 values that estimated their respective kinetic parameter with sufficient accuracy and precision (within 76%) . This B/I approach allows a clinically feasible scan at equilibrium with potentially better accuracy than a static scan SUVR following a bolus injection.

摘要

对于某些正电子发射断层扫描研究,放射性示踪剂以推注加连续输注(B/I)的方式给药,以达到平衡状态。这种方法可以减少扫描时间并简化数据分析;然而,必须针对每个示踪剂验证和优化该方法。本研究旨在验证一种使用靶向突触小泡糖蛋白 2A 的放射性示踪剂[C]UCB-J 和 [F]SynVesT-1 定量突触密度的 B/I 方法。在 120 或 150 分钟的动态扫描过程中,计算了 30 分钟间隔内靶组织相对于血浆(/)或参考组织(SUVR-1)的标准化摄取值(SUV),并分别与单组织隔室(1TC)模型的分布容积()和结合潜力()的估计值进行了比较。我们无法可靠地达到[C]UCB-J 的平衡状态,所有 30 分钟窗口对于/和 SUVR-1 的偏差和/或变异性都过大。对于 [F]SynVesT-1,注射后 90-120 分钟的 30 分钟扫描得出的/和 SUVR-1 值能够以足够的准确性和精度(在 76%以内)估计其各自的动力学参数。这种 B/I 方法允许在平衡状态下进行临床可行的扫描,与推注后静态扫描 SUVR 相比,其准确性可能更高。

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