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正电子发射断层扫描/磁共振成像在人脑成像中提供最佳配准吗?批判性反思。

Does PET/MR in human brain imaging provide optimal co-registration? A critical reflection.

机构信息

Institute of Neurosciences and Medicine, Forschungszentrum Jülich GmbH, 52425 Jülich, Germany.

出版信息

MAGMA. 2013 Feb;26(1):137-47. doi: 10.1007/s10334-012-0359-y. Epub 2013 Jan 9.

Abstract

The introduction of hybrid positron emission/magnetic resonance tomography (PET/MR) in diagnostic clinical imaging was a major step in the evolution of ever-more sophisticated imaging systems combining two strategies formerly regarded as technically incompatible in a single device. The advent of PET/MR opened up many new avenues in clinical and research environments, mainly by providing multi-modality images obtained during a single examination. Ideally, simultaneous data acquisition with hybrid PET/MR should warrant exact image co-registration of all multi-modality image volumes provided by both systems. This assumes that there is negligible mutual electronic, technical and logistical interference on the respective simultaneous measurements. Recently, such hybrid dedicated head and whole-body systems were successfully applied in an increasing number of cases. When employed for brain imaging, PET/MR has the potential to provide high-resolution multi-modality datasets. However, it also demands careful consideration of the multitude of features offered, as well as the limitations. There are open issues that have to be considered, such as the handling of patient motion during extended periods of data acquisition, optimized sampling of derived images to ease the visual interpretation and quantitative evaluation of co-registered images. This paper will briefly summarize the current status of PET/MR within the framework of developments for image co-registration and discuss current limitations and future perspectives.

摘要

混合正电子发射/磁共振断层成像(PET/MR)在诊断临床成像中的引入是将两种策略结合在单个设备中的技术进步的重要一步,这两种策略以前被认为在技术上是不相容的。PET/MR 的出现为临床和研究环境开辟了许多新途径,主要是通过提供在单次检查中获得的多模态图像。理想情况下,混合 PET/MR 的同步数据采集应保证两个系统提供的所有多模态图像体积的精确图像配准。这假设在各自的同时测量中几乎没有相互的电子、技术和后勤干扰。最近,这种混合专用头部和全身系统已成功应用于越来越多的病例。当用于脑成像时,PET/MR 有可能提供高分辨率的多模态数据集。但是,它还需要仔细考虑所提供的多种功能以及限制。还有一些需要考虑的问题,例如在长时间数据采集期间处理患者运动,优化衍生图像的采样,以简化配准图像的视觉解释和定量评估。本文将简要总结在图像配准发展框架内的 PET/MR 的现状,并讨论当前的限制和未来的前景。

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