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临床癌症中心的MR/PET初步经验。

Initial experience of MR/PET in a clinical cancer center.

作者信息

Partovi Sasan, Robbin Mark R, Steinbach Oliver C, Kohan Andres, Rubbert Christian, Vercher-Conejero Jose L, Kolthammer Jeffrey A, Faulhaber Peter, Paspulati Raj Mohan, Ros Pablo R

机构信息

Department of Radiology, UH Seidman Cancer Center, University Hospitals Case Medical Center, Case Western Reserve University, Cleveland, Ohio, USA.

出版信息

J Magn Reson Imaging. 2014 Apr;39(4):768-80. doi: 10.1002/jmri.24334. Epub 2013 Sep 4.

Abstract

Magentic Resonance/positron emission tomography (PET) has been introduced recently for imaging of clinical patients. This hybrid imaging technology combines the inherent strengths of MRI with its high soft-tissue contrast and biological sequences with the inherent strengths of PET, enabling imaging of metabolism with a high sensitivity. In this article, we describe the initial experience of MR/PET in a clinical cancer center along with a review of the literature. For establishing MR/PET in a clinical setting, technical challenges, such as attenuation correction and organizational challenges, such as workflow and reimbursement, have to be overcome. The most promising initial results of MR/PET have been achieved in anatomical areas where high soft-tissue and contrast resolution is of benefit. Head and neck cancer and pelvic imaging are potential applications of this hybrid imaging technology. In the pediatric population, MR/PET can decrease the lifetime radiation dose. MR/PET protocols tailored to different types of malignancies need to be developed. After the initial exploration phase, large multicenter trials are warranted to determine clinical indications for this exciting hybrid imaging technology and thereby opening new horizons in molecular imaging.

摘要

磁共振/正电子发射断层扫描(PET)最近已被引入用于临床患者的成像。这种混合成像技术将MRI固有的优势(其具有高软组织对比度和生物序列)与PET的固有优势相结合,能够以高灵敏度对代谢进行成像。在本文中,我们描述了在临床癌症中心使用MR/PET的初步经验,并对文献进行了综述。为了在临床环境中建立MR/PET,必须克服技术挑战,如衰减校正,以及组织挑战,如工作流程和报销问题。MR/PET最有前景的初步结果已在高软组织和对比度分辨率有益的解剖区域取得。头颈癌和盆腔成像就是这种混合成像技术的潜在应用。在儿科人群中,MR/PET可以降低终身辐射剂量。需要制定针对不同类型恶性肿瘤的MR/PET方案。在初始探索阶段之后,有必要进行大型多中心试验,以确定这种令人兴奋的混合成像技术的临床适应症,从而在分子成像领域开辟新的视野。

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