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Design and assembly of an 8 tesla whole-body MR scanner (see comments)

机译:8特斯拉全身MR扫描仪的设计和组装(请参阅评论)

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PURPOSE: The purpose of this report is to describe the design and construction of an 8 T/80 cm whole-body MRI system operating at 340 MHz. METHOD: The 8 T/80 cm magnet was constructed from 414 km of niobium titanium superconducting wire. The winding of this wire on four aluminum formers resulted in a total inductance of 4,155 H. Gradient subsystems included either a body gradient or a head gradient along with a removable shim insert. The magnet and gradient subsystems were interfaced to two spectrometers. These provided the control of the gradient amplifiers and the two sets of four RF power amplifiers. The latter provide in excess of 8 kW of RF power from 10 to 140 MHz and 10 kW of RF power from 245 to 345 MHz. A dedicated computer-controlled patient table was designed and assembled. The entire system is located in a clinical setting, facilitating patient-based studies. RESULTS: The 8 T/80 cm magnet was energized without complication and achieved persistent operation using 198.9 A of current, thereby storing 81.5 MJ of magnetic energy. Exceptional performance was observed for nearly all components both in isolation and when combined within the complete system. CONCLUSION: An 8 T/80 cm MRI system has been assembled. The magnet subsystem is extremely stable and is characterized by good homogeneity and acceptable boil-off rates.
机译:目的:本报告的目的是描述在340 MHz下运行的8 T / 80 cm全身MRI系统的设计和构造。方法:由414公里的铌钛超导线材制成8 T / 80 cm磁体。将该导线缠绕在四个铝制线圈架上,得出的总电感为4,155H。梯度子系统包括主体梯度或头部梯度以及可移动的垫片插入物。磁体和梯度子系统连接到两个光谱仪。这些提供了对梯度放大器和两组四个RF功率放大器的控制。后者从10到140 MHz提供超过8 kW的RF功率,从245到345 MHz提供10 kW的RF功率。设计并组装了专用的计算机控制患者床。整个系统位于临床环境中,便于基于患者的研究。结果:对8 T / 80 cm磁体进行了通电而没有复杂化,并使用198.9 A的电流实现了持续运行,从而存储了81.5 MJ的磁能。在隔离状态下以及在整个系统中组合时,几乎所有组件都具有出色的性能。结论:已组装了一个8 T / 80 cm MRI系统。磁体子系统非常稳定,并具有良好的均匀性和可接受的蒸发率。

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