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Towards integration of PET/MR hybrid imaging into radiation therapy treatment planning

机译:努力将PET / MR混合成像整合到放射治疗计划中

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摘要

Purpose: Multimodality imaging has become an important adjunct of state-of-the-art radiation therapy (RT) treatment planning. Recently, simultaneous PET/MR hybrid imaging has become clinically available and may also contribute to target volume delineation and biological individualization in RT planning. For integration of PET/MR hybrid imaging into RT treatment planning, compatible dedicated RT devices are required for accurate patient positioning. In this study, prototype RT positioning devices intended for PET/MR hybrid imaging are introduced and tested toward PET/MR compatibility and image quality.Methods: A prototype flat RT table overlay and two radiofrequency (RF) coil holders that each fix one flexible body matrix RF coil for RT headeck imaging have been evaluated within this study. MR image quality with the RT head setup was compared to the actual PET/MR setup with a dedicated head RF coil. PET photon attenuation and CT-based attenuation correction (AC) of the hardware components has been quantitatively evaluated by phantom scans. Clinical application of the new RT setup in PET/MR imaging was evaluated in an in vivo study.Results: The RT table overlay and RF coil holders are fully PET/MR compatible. MR phantom and volunteer imaging with the RT head setup revealed high image quality, comparable to images acquired with the dedicated PET/MR head RF coil, albeit with 25% reduced SNR. Repositioning accuracy of the RF coil holders was below 1 mm. PET photon attenuation of the RT table overlay was calculated to be 3.8% and 13.8% for the RF coil holders. With CT-based AC of the devices, the underestimation error was reduced to 0.6% and 0.8%, respectively. Comparable results were found within the patient study.Conclusions: The newly designed RT devices for hybrid PET/MR imaging are PET and MR compatible. The mechanically rigid design and the reproducible positioning allow for straightforward CT-based AC. The systematic evaluation within this study provides the technical basis for the clinical integration of PET/MR hybrid imaging into RT treatment planning.
机译:目的:多模态成像已成为最新放射治疗(RT)治疗计划的重要辅助手段。最近,同时进行PET / MR混合成像已在临床上可用,并且也可能有助于RT计划中的靶标体积描绘和生物学个体化。为了将PET / MR混合成像整合到RT治疗计划中,需要兼容的专用RT设备才能准确定位患者。在这项研究中,介绍了用于PET / MR混合成像的原型RT定位设备并针对PET / MR兼容性和图像质量进行了测试。方法:一个原型平坦的RT工作台覆盖物和两个射频(RF)线圈架,每个固定一个柔性体在这项研究中,对用于RT头/颈部成像的矩阵RF线圈进行了评估。将带有RT头设置的MR图像质量与带有专用头RF线圈的实际PET / MR设置进行了比较。已通过幻像扫描定量评估了硬件组件的PET光子衰减和基于CT的衰减校正(AC)。在一项体内研究中评估了新的RT装置在PET / MR成像中的临床应用。结果:RT台覆盖物和RF线圈架完全兼容PET / MR。使用RT头设置的MR体模和志愿者成像显示出高图像质量,与使用专用PET / MR头RF线圈采集的图像相比,尽管SNR降低了25%。射频线圈支架的重新定位精度低于1毫米。对于RF线圈支架,RT工作台覆盖层的PET光子衰减计算为3.8%和13.8%。使用基于CT的设备交流电,低估误差分别降低至0.6%和0.8%。在患者研究中发现了可比较的结果。结论:用于混合PET / MR成像的新设计的RT设备与PET和MR兼容。机械上坚固的设计和可重现的位置允许直接使用基于CT的AC。这项研究中的系统评价为将PET / MR混合成像临床整合到RT治疗计划中提供了技术基础。

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