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用于7T成像的、在298MHz调谐的圆柱形容积线圈的设计。

Design of a volumetric cylindrical coil-tuned at 298 MHz for 7 T imaging.

作者信息

Hossain Shadeeb, Taracila Victor, Robb Fraser J L, Moore James, Winkler Simone Angela

机构信息

Department of Radiology, Weill Cornell Medicine, NY 10021, USA.

GE Healthcare Coils, Aurora, OH, USA.

出版信息

Instrum Sci Technol. 2024;52(4):433-455. doi: 10.1080/10739149.2023.2286376. Epub 2023 Nov 24.

Abstract

The concept of a 2D cylindrical High Pass Ladder (2D c-HPL) is used in the development of this ultra high radio frequency (UHRF) volumetric head coil for 7T tuned at the Larmor frequency of 298 MHz. The architecture of the 2D c-HPL helps to overcome the challenges associated with non-uniform magnetic field distribution. The prototype consists of an individual resonating array of inductance-capacitance (LC) elements and each component is tuned to the precise frequency. The tuning of the (i) inductance, (ii) capacitance, (iii) mesh size, and (iv) coupling coefficient play critical roles to attain the desired Larmor frequency. For this proof-of-concept, the prototype of a volumetric head coil consists of a cylindrical array size of 4 ×6, with individual LC components of inductance magnitude, 98 nH and four fixed value capacitors and one tunable capacitor that allowed to achieve the desired precession frequency, . The model was tested for three different values of 269 MHz, 275 MHz and 286 MHz. The mutual coupling and the eigenfrequencies were compared through bench testing and dispersion equation. The experimental data were in good agreement (< 5%) with the theoretical eigenfrequencies from the dispersion relation. The theoretical eigenfrequencies and the experimental eigenfrequencies are in good agreement for eigenmodes (1,2), (1,3), (2,2), (2,3) and (4,3).

摘要

二维圆柱形高通梯形(2D c-HPL)的概念用于开发这款超高频(UHRF)容积式头部线圈,该线圈针对7T进行了调谐,拉莫尔频率为298 MHz。二维c-HPL的架构有助于克服与非均匀磁场分布相关的挑战。该原型由电感 - 电容(LC)元件的单个谐振阵列组成,每个组件都被调谐到精确的频率。(i)电感、(ii)电容、(iii)网格尺寸和(iv)耦合系数的调谐对于实现所需的拉莫尔频率起着关键作用。对于这个概念验证,容积式头部线圈的原型由4×6的圆柱形阵列尺寸组成,具有电感量为98 nH的单个LC组件以及四个固定值电容器和一个可调电容器,以实现所需的进动频率。该模型针对269 MHz、275 MHz和286 MHz这三个不同的频率值进行了测试。通过台架测试和色散方程比较了互耦和本征频率。实验数据与色散关系的理论本征频率吻合良好(<5%)。对于本征模式(1,2)、(1,3)、(2,2)、(2,3)和(4,3),理论本征频率和实验本征频率吻合良好。

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