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动态[F]NaF正电子发射断层扫描(PET)扫描时长对膝关节动力学摄取参数的影响

Effects of dynamic [F]NaF PET scan duration on kinetic uptake parameters in the knee.

作者信息

Watkins Lauren E, Haddock Bryan, Goyal Ananya, Kogan Feliks

机构信息

Department of Radiology, Stanford University, Stanford, CA, United States.

Department of Imaging Research, Steadman Philippon Research Institute, Vail, CO, United States.

出版信息

Front Nucl Med. 2023 Nov 24;3:1194961. doi: 10.3389/fnume.2023.1194961. eCollection 2023.

Abstract

INTRODUCTION

Accurately estimating bone perfusion and metabolism using [F]NaF kinetics from shorter scan times could help address concerns related to patient comfort, motion, and throughput for PET scans. We examined the impact of changing the PET scan duration on the accuracy of [F]NaF kinetic parameters in the knee.

METHODS

Both knees of twenty participants with and without osteoarthritis were scanned using a hybrid PET-MRI system (53 ± 13 years, BMI 25.9 ± 4.2 kg/m, 13 female). Seventeen participants were scanned for 54 ± 2 min, and an additional three participants were scanned for 75 min. Patlak and Hawkins kinetic parameters ( , , extraction fraction) were assessed using 50- or 75-minutes of scan data as well as for scan durations that were retrospectively shortened. The error of the kinetic uptake parameters was calculated in bone regions throughout the knee.

RESULTS

The mean error of Patlak , Hawkins , , and extraction fraction was less than 10% for scan durations exceeding 30 min and decreased with increasing scan duration.

CONCLUSIONS

The length of dynamic data acquisition can be reduced to as short as 30 min while retaining accuracy within the limits of reproducibility of Hawkins kinetic uptake parameters.

摘要

引言

通过更短的扫描时间利用[F]NaF动力学准确估计骨灌注和代谢,有助于解决与PET扫描患者舒适度、运动及通量相关的问题。我们研究了改变PET扫描持续时间对膝关节[F]NaF动力学参数准确性的影响。

方法

使用PET-MRI混合系统对20名有或无骨关节炎参与者的双侧膝关节进行扫描(年龄53±13岁,体重指数25.9±4.2kg/m²,13名女性)。17名参与者扫描54±2分钟,另外3名参与者扫描75分钟。使用50分钟或75分钟的扫描数据以及回顾性缩短的扫描持续时间评估Patlak和Hawkins动力学参数( , ,提取分数)。计算整个膝关节骨区域动力学摄取参数的误差。

结果

对于超过30分钟的扫描持续时间,Patlak 、Hawkins 、 以及提取分数的平均误差小于10%,且随着扫描持续时间的增加而减小。

结论

动态数据采集的时长可缩短至30分钟,同时在Hawkins动力学摄取参数的可重复性范围内保持准确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/853f/11440834/0aabd1304d03/fnume-03-1194961-g001.jpg

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