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Design of a quadrature coil for MRI of carbon in human liver at 7T

机译:7T时人肝脏碳核磁共振的正交线圈设计

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Magnetic Resonance Imaging (MRI) is a method of generating images of soft tissues inside a human body by means of magnetic fields. The method is widely used for medical diagnosis as well as healthcare research. A crucial component of an MRI system is the radio frequency (RF) coil, which should efficiently generate and detect alternating magnetic fields. While typically hydrogen nucleus is used for imaging purposes, imaging other nuclei can vastly extend the capability of MRI. In this work, the design of a coil for carbon-13 high field MRI is presented. The coil is specifically designed for human liver imaging and provides 2 to 3 times better SNR which will result in higher image resolution, or 4 to 9 times faster scan time.
机译:磁共振成像(MRI)是一种通过磁场生成人体内部软组织图像的方法。该方法被广泛用于医学诊断以及保健研究。 MRI系统的关键组件是射频(RF)线圈,该线圈应有效地产生和检测交变磁场。尽管通常将氢核用于成像目的,但对其他核成像可大大扩展MRI的能力。在这项工作中,提出了碳13高场MRI线圈的设计。该线圈专为人类肝脏成像而设计,可提供2至3倍的信噪比(SNR),从而获得更高的图像分辨率或4至9倍的扫描时间。

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