Division of MR Research, Department of Radiology, Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.
Magnetic Resonance Center, Max Planck Institute for Biological Cybernetics, Tübingen, Germany.
Magn Reson Med. 2022 Aug;88(2):546-574. doi: 10.1002/mrm.29241. Epub 2022 Apr 22.
Amide proton transfer-weighted (APTw) MR imaging shows promise as a biomarker of brain tumor status. Currently used APTw MRI pulse sequences and protocols vary substantially among different institutes, and there are no agreed-on standards in the imaging community. Therefore, the results acquired from different research centers are difficult to compare, which hampers uniform clinical application and interpretation. This paper reviews current clinical APTw imaging approaches and provides a rationale for optimized APTw brain tumor imaging at 3 T, including specific recommendations for pulse sequences, acquisition protocols, and data processing methods. We expect that these consensus recommendations will become the first broadly accepted guidelines for APTw imaging of brain tumors on 3 T MRI systems from different vendors. This will allow more medical centers to use the same or comparable APTw MRI techniques for the detection, characterization, and monitoring of brain tumors, enabling multi-center trials in larger patient cohorts and, ultimately, routine clinical use.
酰胺质子转移加权(APTw)磁共振成像有望成为脑肿瘤状态的生物标志物。目前,不同机构使用的 APTw MRI 脉冲序列和方案差异很大,影像学界也没有达成共识的标准。因此,不同研究中心获得的结果难以进行比较,这阻碍了其在临床上的统一应用和解释。本文综述了目前的临床 APTw 成像方法,并为在 3T 下优化 APTw 脑肿瘤成像提供了理论基础,包括对脉冲序列、采集方案和数据处理方法的具体建议。我们期望这些共识建议将成为不同厂商 3T MRI 系统上 APTw 脑肿瘤成像的首个广泛接受的指南。这将使更多的医疗中心能够使用相同或类似的 APTw MRI 技术来检测、表征和监测脑肿瘤,从而能够在更大的患者群体中进行多中心试验,并最终实现常规临床应用。