Suppr超能文献

一种三轴边缘ROU头部和颈部梯度线圈的设计与制造。

Design and fabrication of a three-axis edge ROU head and neck gradient coil.

作者信息

Chronik B A, Alejski A, Rutt B K

机构信息

Department of Physics and Astronomy, University of Western Ontario, London, Ontario, Canada.

出版信息

Magn Reson Med. 2000 Dec;44(6):955-63. doi: 10.1002/1522-2594(200012)44:6<955::aid-mrm18>3.0.co;2-1.

Abstract

The design, fabrication, and testing of a complete three-axis gradient coil capable of imaging the human neck is described. The analytic method of constrained current minimum inductance (CCMI) was used to position the uniform region of the gradient coil adjacent to and extending beyond the physical edge of the coil. The average gradient efficiency of the three balanced axes is 0.37 mT/m/A and the average inductance is 827 microH. With maximum amplifier current of 200A and receive signal sweep width of +/-125 kHz, the average minimum FOV using this gradient set is 7.9 cm. The completed coil has an inner diameter of 32 cm, an outer diameter of 42 cm, and a length (including cabling connections) of 80 cm. The entire coil was built in-house. The structure is actively water cooled. Heating measurements were made to characterize the thermal response of the coil under various operating conditions and it was determined that a continuous current of 100A could be passed through all three axes simultaneously without increasing the internal coil temperature by more than 23 degrees C. Eddy current measurements were made for all axes. With digital compensation, the gradient eddy current components could be adequately compensated. A large B(o) eddy current field is produced by the Gz axis that could be corrected through the use of an auxiliary B(o) compensation coil. Preliminary imaging results are shown in both phantoms and human subjects.

摘要

本文描述了一种能够对人体颈部进行成像的完整三轴梯度线圈的设计、制造和测试。采用约束电流最小电感(CCMI)分析方法,将梯度线圈的均匀区域定位在靠近线圈物理边缘并延伸至其边缘之外的位置。三个平衡轴的平均梯度效率为0.37 mT/m/A,平均电感为827微亨。在放大器最大电流为200A且接收信号扫描宽度为+/-125 kHz的情况下,使用该梯度线圈组的平均最小视野为7.9厘米。制成的线圈内径为32厘米,外径为42厘米,长度(包括电缆连接)为80厘米。整个线圈是在内部制造的。该结构采用主动水冷方式。进行了发热测量以表征线圈在各种工作条件下的热响应,结果表明,三个轴可同时通过100A的连续电流,而不会使线圈内部温度升高超过23摄氏度。对所有轴进行了涡流测量。通过数字补偿,可以充分补偿梯度涡流分量。Gz轴会产生一个大的B(o)涡流场,可通过使用辅助B(o)补偿线圈进行校正。在体模和人体受试者中均展示了初步成像结果。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验