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集成式PET/MR乳腺癌成像:衰减校正及16通道射频线圈的应用

Integrated PET/MR breast cancer imaging: Attenuation correction and implementation of a 16-channel RF coil.

作者信息

Oehmigen Mark, Lindemann Maike E, Lanz Titus, Kinner Sonja, Quick Harald H

机构信息

High Field and Hybrid MR Imaging, University Hospital Essen, Essen 45147, Germany.

Rapid Biomedical GmbH, Rimpar 97222, Germany.

出版信息

Med Phys. 2016 Aug;43(8):4808. doi: 10.1118/1.4959546.

Abstract

PURPOSE

This study aims to develop, implement, and evaluate a 16-channel radiofrequency (RF) coil for integrated positron emission tomography/magnetic resonance (PET/MR) imaging of breast cancer. The RF coil is designed for optimized MR imaging performance and PET transparency and attenuation correction (AC) is applied for accurate PET quantification.

METHODS

A 16-channel breast array RF coil was designed for integrated PET/MR hybrid imaging of breast cancer lesions. The RF coil features a lightweight rigid design and is positioned with a spacer at a defined position on the patient table of an integrated PET/MR system. Attenuation correction is performed by generating and applying a dedicated 3D CT-based template attenuation map. Reposition accuracy of the RF coil on the system patient table while using the positioning frame was tested in repeated measurements using MR-visible markers. The MR, PET, and PET/MR imaging performances were systematically evaluated using modular breast phantoms. Attenuation correction of the RF coil was evaluated with difference measurements of the active breast phantoms filled with radiotracer in the PET detector with and without the RF coil in place, serving as a standard of reference measurement. The overall PET/MR imaging performance and PET quantification accuracy of the new 16-channel RF coil and its AC were then evaluated in first clinical examinations on ten patients with local breast cancer.

RESULTS

The RF breast array coil provides excellent signal-to-noise ratio and signal homogeneity across the volume of the breast phantoms in MR imaging and visualizes small structures in the phantoms down to 0.4 mm in plane. Difference measurements with PET revealed a global loss and thus attenuation of counts by 13% (mean value across the whole phantom volume) when the RF coil is placed in the PET detector. Local attenuation ranging from 0% in the middle of the phantoms up to 24% was detected in the peripheral regions of the phantoms at positions closer to attenuating hardware structures of the RF coil. The position accuracy of the RF coil on the patient table when using the positioning frame was determined well below 1 mm for all three spatial dimensions. This ensures perfect position match between the RF coil and its three-dimensional attenuation template during the PET data reconstruction process. When applying the CT-based AC of the RF coil, the global attenuation bias was mostly compensated to ±0.5% across the entire breast imaging volume. The patient study revealed high quality MR, PET, and combined PET/MR imaging of breast cancer. Quantitative activity measurements in all 11 breast cancer lesions of the ten patients resulted in increased mean difference values of SUVmax 11.8% (minimum 3.2%; maximum 23.2%) between nonAC images and images when AC of the RF breast coil was applied. This supports the quantitative results of the phantom study as well as successful attenuation correction of the RF coil.

CONCLUSIONS

A 16-channel breast RF coil was designed for optimized MR imaging performance and PET transparency and was successfully integrated with its dedicated attenuation correction template into a whole-body PET/MR system. Systematic PET/MR imaging evaluation with phantoms and an initial study on patients with breast cancer provided excellent MR and PET image quality and accurate PET quantification.

摘要

目的

本研究旨在开发、实施并评估一种用于乳腺癌正电子发射断层扫描/磁共振成像(PET/MR)一体化成像的16通道射频(RF)线圈。该RF线圈旨在优化磁共振成像性能,并且采用PET透明度和衰减校正(AC)来实现准确的PET定量分析。

方法

设计了一种用于乳腺癌病变PET/MR混合成像的16通道乳腺阵列RF线圈。该RF线圈具有轻质刚性设计,并通过一个间隔器定位在一体化PET/MR系统患者检查台上的指定位置。通过生成并应用基于专用三维CT的模板衰减图来进行衰减校正。在使用MR可见标记的重复测量中,测试了使用定位框架时RF线圈在系统患者检查台上的重新定位精度。使用模块化乳腺模型系统地评估了MR、PET和PET/MR成像性能。通过在PET探测器中放置和不放置RF线圈时对充满放射性示踪剂的活性乳腺模型进行差异测量,评估RF线圈的衰减校正,以此作为参考测量标准。然后,在对10例局部乳腺癌患者的首次临床检查中,评估了新型16通道RF线圈及其AC的整体PET/MR成像性能和PET定量准确性。

结果

RF乳腺阵列线圈在MR成像中能为乳腺模型的整个体积提供出色的信噪比和信号均匀性,并能显示模型中低至平面内0.4毫米的小结构。PET差异测量显示,当将RF线圈放置在PET探测器中时,计数整体损失,即衰减了13%(整个模型体积的平均值)。在模型周边区域靠近RF线圈衰减硬件结构的位置,检测到局部衰减范围从模型中部的0%到24%。使用定位框架时,RF线圈在患者检查台上的位置精度在所有三个空间维度上均确定为远低于1毫米。这确保了在PET数据重建过程中,RF线圈与其三维衰减模板之间的完美位置匹配。应用RF线圈基于CT的AC时,在整个乳腺成像体积内,整体衰减偏差大多被补偿到±0.5%。患者研究显示了乳腺癌的高质量MR、PET以及联合PET/MR成像。对10例患者的所有11个乳腺癌病变进行的定量活性测量结果表明,在未进行AC的图像与应用RF乳腺线圈AC后的图像之间,SUVmax的平均差异值增加了11.8%(最小值3.2%;最大值23.2%)。这支持了模型研究的定量结果以及RF线圈的成功衰减校正。

结论

设计了一种用于优化MR成像性能和PET透明度的16通道乳腺RF线圈,并成功地将其与专用衰减校正模板集成到全身PET/MR系统中。使用模型进行的系统PET/MR成像评估以及对乳腺癌患者的初步研究提供了出色的MR和PET图像质量以及准确的PET定量分析。

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