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Electromechanical Design and Construction of a Rotating Radio-Frequency Coil System for Applications in Magnetic Resonance

机译:磁共振中旋转射频线圈系统的机电设计与构建

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While recent studies have shown that rotating a single radio-frequency (RF) coil during the acquisition of magnetic resonance (MR) images provides a number of hardware advantages (i.e., requires only one RF channel, avoids coil–coil coupling and facilitates large-scale multinuclear imaging), they did not describe in detail how to build a rotating RF coil system. This paper presents detailed engineering information on the electromechanical design and construction of a MR-compatible RRFC system for human head imaging at 2 T. A custom-made (bladeless) pneumatic Tesla turbine was used to rotate the RF coil at a constant velocity, while an infrared optical encoder measured the selected frequency of rotation. Once the rotating structure was mechanically balanced and the compressed air supply suitably regulated, the maximum frequency of rotation measured ∼14.5 Hz with a 2.4% frequency variation over time. MR images of a water phantom and human head were obtained using the rotating RF head coil system.
机译:虽然最近的研究表明,在磁共振(MR)图像采集过程中旋转单个射频(RF)线圈具有许多硬件优势(即,仅需要一个RF通道,避免了线圈与线圈的耦合,并有助于大规模多核成像),他们没有详细描述如何构建旋转RF线圈系统。本文介绍了有关在2 T下进行人头成像的MR兼容RRFC系统的机电设计和构造的详细工程信息。使用了定制的(无叶片)气动Tesla涡轮机,使RF线圈以恒定速度旋转,而红外光学编码器测量选定的旋转频率。一旦旋转结构达到机械平衡,并适当调节了压缩空气供应量,旋转的最大频率即为〜14.5 Hz,随时间变化的频率为2.4%。使用旋转射频头线圈系统获得水幻影和人头的MR图像。

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