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介入呼吸运动补偿的同时荧光透视和核成像:一个幻影研究。

Interventional respiratory motion compensation by simultaneous fluoroscopic and nuclear imaging: a phantom study.

机构信息

Radiology and Nuclear Medicine, Utrecht University and University Medical Center Utrecht, PO Box 85500, 3508 GA, Utrecht, The Netherlands.

Image Sciences Institute, Utrecht University and University Medical Center Utrecht, PO Box 85500, 3508 GA, Utrecht, The Netherlands.

出版信息

Phys Med Biol. 2021 Mar 2;66(6):065001. doi: 10.1088/1361-6560/abe556.

Abstract

PURPOSE

A compact and mobile hybrid c-arm scanner, capable of simultaneously acquiring nuclear and fluoroscopic projections and SPECT/CBCT, was developed to aid fluoroscopy-guided interventional procedures involving the administration of radionuclides (e.g. hepatic radioembolization). However, as in conventional SPECT/CT, the acquired nuclear images may be deteriorated by patient respiratory motion. We propose to perform compensation for respiratory motion by extracting the motion signal from fluoroscopic projections so that the nuclear counts can be gated into motion bins. The purpose of this study is to quantify the performance of this motion compensation technique with phantom experiments.

METHODS

Anthropomorphic phantom configurations that are representative of distributions obtained during the pre-treatment procedure of hepatic radioembolization were placed on a stage that translated with three different motion patterns. Fluoroscopic projections and nuclear counts were simultaneously acquired under planar and SPECT/CBCT imaging. The planar projections were visually assessed. The SPECT reconstructions were visually assessed and quantitatively assessed by calculating the activity recovery of the spherical inserts in the phantom.

RESULTS

The planar nuclear projections of the translating anthropomorphic phantom were blurry when no motion compensation was applied. With motion compensation, the nuclear projections became representative of the stationary phantom nuclear projection. Similar behavior was observed for the visual quality of SPECT reconstructions. The mean error of the activity recovery in the uncompensated SPECT reconstructions was 15.8% ± 0.9% for stable motion, 11.9% ± 0.9% for small variations, and 11.0% ± 0.9% for large variations. When applying motion compensation, the mean error decreased to 1.8% ± 1.6% for stable motion, 2.2% ± 1.5% for small variations, and 5.2% ± 2.5% for large variations.

CONCLUSION

A compact and mobile hybrid c-arm scanner, capable of simultaneously acquiring nuclear and fluoroscopic projections, can perform compensation for respiratory motion. Such motion compensation results in sharper planar nuclear projections and increases the quantitative accuracy of the SPECT reconstructions.

摘要

目的

开发了一种紧凑且移动的混合 C 臂扫描仪,能够同时获取核和荧光投影以及 SPECT/CBCT,以辅助放射性核素给药的透视引导介入程序(例如肝放射性栓塞)。然而,与传统的 SPECT/CT 一样,采集的核图像可能会因患者呼吸运动而恶化。我们建议通过从荧光投影中提取运动信号来对运动进行补偿,以便将核计数门控到运动-bin 中。本研究的目的是通过体模实验来量化这种运动补偿技术的性能。

方法

将代表肝放射性栓塞治疗前过程中获得的分布的拟人化体模配置放置在一个平台上,该平台以三种不同的运动模式进行平移。在平面和 SPECT/CBCT 成像下同时采集荧光投影和核计数。平面投影通过视觉评估。SPECT 重建通过计算体模中球形插入物的活性恢复来进行视觉评估和定量评估。

结果

在没有运动补偿的情况下,平移拟人化体模的平面核投影模糊不清。使用运动补偿后,核投影成为静止体模核投影的代表。SPECT 重建的视觉质量也表现出类似的行为。在未补偿的 SPECT 重建中,稳定运动的平均活性恢复误差为 15.8%±0.9%,小变化的平均活性恢复误差为 11.9%±0.9%,大变化的平均活性恢复误差为 11.0%±0.9%。应用运动补偿后,稳定运动的平均误差降低至 1.8%±1.6%,小变化的平均误差降低至 2.2%±1.5%,大变化的平均误差降低至 5.2%±2.5%。

结论

一种能够同时获取核和荧光投影的紧凑且移动的混合 C 臂扫描仪,可以进行呼吸运动补偿。这种运动补偿可使平面核投影更加清晰,并提高 SPECT 重建的定量准确性。

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