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首页> 外文期刊>NMR in biomedicine >F-19 MRSI of capecitabine in the liver at 7T using broadband transmit-receive antennas and dual-band RF pulses
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F-19 MRSI of capecitabine in the liver at 7T using broadband transmit-receive antennas and dual-band RF pulses

机译:使用宽带收发天线和双频RF脉冲在7T时卡培他滨在肝中的F-19 MRSI

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摘要

Capecitabine (Cap) is an often prescribed chemotherapeutic agent, successfully used to cure some patients from cancer or reduce tumor burden for palliative care. However, the efficacy of the drug is limited, it is not known in advance who will respond to the drug and it can come with severe toxicity. F-19 Magnetic Resonance Spectroscopy (MRS) and Magnetic Resonance Spectroscopic Imaging (MRSI) have been used to non-invasively study Cap metabolism in vivo to find a marker for personalized treatment. In vivo detection, however, is hampered by low concentrations and the use of radiofrequency (RF) surface coils limiting spatial coverage. In this work, the use of a 7T MR system with radiative multi-channel transmit-receive antennas was investigated with the aim of maximizing the sensitivity and spatial coverage of F-19 detection protocols. The antennas were broadband optimized to facilitate both the H-1 (298MHz) and F-19 (280MHz) frequencies for accurate shimming, imaging and signal combination. B-1(+) simulations, phantom and noise measurements showed that more than 90% of the theoretical maximum sensitivity could be obtained when using B-1(+) and B-1(-) information provided at the H-1 frequency for the optimization of B-1(+) and B-1(-) at the F-19 frequency. Furthermore, to overcome the limits in maximum available RF power, whilst ensuring simultaneous excitation of all detectable conversion products of Cap, a dual-band RF pulse was designed and evaluated. Finally, F-19 MRS(I) measurements were performed to detect F-19 metabolites in vitro and in vivo. In two patients, at 10h (patient 1) and 1h (patient 2) after Cap intake, F-19 metabolites were detected in the liver and the surrounding organs, illustrating the potential of the set-up for in vivo detection of metabolic rates and drug distribution in the body. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:卡培他滨(Cap)是一种经常开处方的化学治疗剂,已成功用于治愈某些癌症患者或减轻肿瘤负担,以实现姑息治疗。但是,该药物的功效是有限的,尚不知道谁会对药物产生反应,并且可能会产生严重的毒性。 F-19磁共振波谱(MRS)和磁共振波谱成像(MRSI)已用于体内非侵入性研究Cap代谢,以寻找个性化治疗的标志物。但是,体内检测受到低浓度的限制,并且使用射频(RF)表面线圈限制了空间覆盖范围。在这项工作中,研究了将7T MR系统与辐射多信道收发天线配合使用的目的,旨在最大程度地提高F-19检测协议的灵敏度和空间覆盖率。天线经过宽带优化,以促进H-1(298MHz)和F-19(280MHz)频率,以实现精确的匀场,成像和信号组合。 B-1(+)仿真,幻像和噪声测量表明,使用H-1频率提供的B-1(+)和B-1(-)信息时,可以获得90%以上的理论最大灵敏度。在F-19频率下优化B-1(+)和B-1(-)。此外,为了克服最大可用RF功率的限制,同时确保同时激发Cap的所有可检测转换产物,设计并评估了双频带RF脉冲。最后,进行F-19 MRS(I)测量以在体外和体内检测F-19代谢产物。在两名患者中,分别在摄入Cap的10h(患者1)和1h(患者2)时,在肝脏和周围器官中检测到F-19代谢物,这说明了该方法在体内检测代谢率和代谢的潜力。药物在体内的分布。版权所有(c)2015 John Wiley&Sons,Ltd.

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