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动脉输入函数记录方法对小动物 PET 动力学参数的影响。

Impact of the Arterial Input Function Recording Method on Kinetic Parameters in Small-Animal PET.

机构信息

Werner Siemens Imaging Center, Department of Preclinical Imaging and Radiopharmacy, Eberhard Karls University of Tuebingen, Tuebingen, Germany

International Max Planck Research School for Cognitive and Systems Neuroscience, Tuebingen, Germany; and.

出版信息

J Nucl Med. 2018 Jul;59(7):1159-1164. doi: 10.2967/jnumed.117.204164. Epub 2018 Feb 23.

Abstract

The goal of this study was to validate the use of an MR-compatible blood sampler (BS) with a detector system based on a lutetium oxyorthosilicate scintillator and avalanche photodiodes for small-animal PET. Five rats underwent a 60-min F-FDG study. For each animal, the arterial input function (AIF) was derived from the BS recording, from manual sampling (MS), and from the PET image. These AIFs were applied for kinetic modeling of the striatum using the irreversible 2-tissue-compartment model. The MS-based technique with a dispersion correction served as a reference approach, and the kinetic parameters that were estimated with the BS- and the image-derived AIFs were compared with the reference values. Additionally, the effect of applying a population-based activity ratio for plasma to whole blood (/) and the dispersion correction was assessed. The , , and values estimated with the reference approach were 0.174 ± 0.037 mL/min/cm, 0.342 ± 0.080 1/min, and 0.048 ± 0.009 1/min, respectively. The corresponding parameters obtained with the BS- and image-derived AIFs deviated from these values by 0.6%-18.8% and 16.7%-47.9%, respectively. To compensate for the error in the BS-based technique, data from one MS collected at the end of the experiment were combined with the data from the first 10 min of the BS recording. This approach reduced the deviation in the kinetic parameters to 1.8%-6.3%. Using / led to a 1.7%-8.3% difference from the reference parameters. The sensitivity of the BS was 23%, the energy resolution for the 511-keV photopeak was 19%, and the timing resolution was 11.2 ns. Online recording of the blood activity level with the BS allows precise measurement of AIF, without loss of blood volume. Combining the BS data with one MS is the most accurate approach for the data analysis. The high sensitivity of the device may allow application of lower radioactivity doses.

摘要

本研究的目的是验证一种基于硅酸镥闪烁体和雪崩光电二极管的探测器系统的 MR 兼容血样采集器 (BS) 在小动物 PET 中的应用。5 只大鼠进行了 60 分钟的 F-FDG 研究。对于每只动物,动脉输入函数 (AIF) 是从 BS 记录、手动采样 (MS) 和 PET 图像中得出的。这些 AIF 用于使用不可逆的 2 组织室模型对纹状体进行动力学建模。经过分散校正的 MS 技术作为参考方法,使用 BS 和图像衍生的 AIF 估算的动力学参数与参考值进行比较。此外,评估了应用基于群体的血浆与全血活性比 (/ ) 和分散校正的效果。参考方法估计的 、 、 值分别为 0.174 ± 0.037 mL/min/cm、0.342 ± 0.080 1/min 和 0.048 ± 0.009 1/min。BS 和图像衍生的 AIF 获得的相应参数分别偏离这些值 0.6%-18.8%和 16.7%-47.9%。为了补偿基于 BS 的技术中的误差,将实验结束时采集的一个 MS 中的数据与 BS 记录的前 10 分钟的数据相结合。这种方法将动力学参数的偏差降低到 1.8%-6.3%。使用 / 导致与参考参数的差异为 1.7%-8.3%。BS 的灵敏度为 23%,511keV 光峰的能量分辨率为 19%,时间分辨率为 11.2 ns。BS 在线记录血液活性水平可以精确测量 AIF,而不会损失血量。将 BS 数据与一个 MS 结合是数据分析最准确的方法。该设备的高灵敏度可能允许应用较低的放射性剂量。

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