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首页> 外文期刊>IEEE journal on electromagnetic compatibility practice and applications >Safety of Subjects During Radiofrequency Exposure in Ultra-High-Field Magnetic Resonance Imaging
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Safety of Subjects During Radiofrequency Exposure in Ultra-High-Field Magnetic Resonance Imaging

机译:受试者在接触射频的安全在Ultra-High-Field磁共振成像

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摘要

Magnetic resonance imaging (MRI) is one of the most important medical imaging techniques. Since the introduction of MRI in the mid-1980s, there has been a continuous trend toward higher static magnetic fields to obtain i.a. a higher signal-to-noise ratio. The step toward ultra-high-field (UHF) MRI at 7 Tesla and higher, however, creates several challenges regarding the homogeneity of the spin excitation RF transmit field and the RF exposure of the subject. In UHF MRI systems, the wavelength of the RF field is in the range of the diameter of the human body, which can result in inhomogeneous spin excitation and local SAR hotspots. To optimize the homogeneity in a region of interest, UHF MRI systems use parallel transmit systems with multiple transmit antennas and time-dependent modulation of the RF signal in the individual transmit channels. Furthermore, SAR increases with increasing field strength, while the SAR limits remain unchanged. Two different approaches to generate the RF transmit field in UHF systems using antenna arrays close and remote to the body are investigated in this letter. Achievable imaging performance is evaluated compared to typical clinical RF transmit systems at lower field strength. The evaluation has been performed under consideration of RF exposure based on local SAR and tissue temperature. Furthermore, results for thermal dose as an alternative RF exposure metric are presented.
机译:磁共振成像(MRI)是其中一个最重要的医学成像技术。核磁共振的引入在1980年代中期,在那里是一个持续的趋势静态高吗磁场获得更高主义者信噪比。7点ultra-high-field (UHF) MRI特斯拉和更高,然而,创建相关的一些挑战同质性的自旋激发射频传输场的射频接触问题。核磁共振成像系统中,射频领域的波长人体的直径的范围,这会导致不均匀旋转励磁吗和当地的SAR热点。感兴趣的同质区域,超高频MRI系统使用并行传输系统多个发射天线和时间调制射频信号的个体传输通道。随着磁场强度增加,而特区限制保持不变。生成在超高频射频传输系统使用天线阵列和远程接近身体研究了在这封信。成像相比,性能评估典型临床射频传输系统在较低磁场强度。在考虑根据当地的射频接触SAR和组织温度。对热剂量是一种另类的射频接触提出了度量。

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