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Design and construction of an optimized transmit/receive hybrid birdcage resonator to improve full body images of medium-sized animals in 7T scanner

机译:优化的发射/接收混合鸟笼谐振器的设计与构建,以改善7T扫描仪中型动物的全身图像

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摘要

The purpose of this work was to develop an optimized transmit/receive birdcage coil to extend the possibilities of a 7T preclinical MRI system to conduct improved full body imaging in medium-sized animals, such as large New Zealand rabbits. The coil was designed by combining calculation and electromagnetic simulation tools. The construction was based on precise mechanical design and careful building practice. A 16-leg, 20 cm long, 16 cm inner diameter, shielded quadrature hybrid structure was selected. Coil parameters were assessed on the bench and images were acquired on phantoms and rabbits. The results were compared to simulations and data obtained with an available commercial coil. An inexpensive assembly with an increase of 2 cm in useful inner diameter and 50 Ω matching with larger animals was achieved. A reduction in radiofrequency (RF) power demand of 31.8%, an improvement in image uniformity of 18.5 percentage points and an increase in signal-to-noise ratio of up to 42.2% were revealed by phantom image acquisitions, which was confirmed by in vivo studies. In conclusion, the proposed coil extended the possibilities of a preclinical 7T system as it improved image studies in relatively large animals by reducing the RF power demand, and increasing image uniformity and signal-to-noise ratio. Shorter scans and time under anesthesia or reduced RF exposure, resulting in better images and lower animal health risk during in vivo experiments, were achieved.
机译:这项工作的目的是开发优化的发射/接收鸟笼线圈,以延长7T临床前MRI系统的可能性,以在中型动物中进行改进的全身成像,例如大型新西兰兔。通过组合计算和电磁仿真工具来设计线圈。该施工基于精确的机械设计和仔细的建筑实践。选择16腿,20厘米长,16厘米的内径,屏蔽正交混合结构。在替补席上评估线圈参数,并在幽灵和兔子上获得图像。将结果与可用商用线圈获得的模拟和数据进行比较。实现了在有用的内径增加2厘米的廉价组件和与较大动物的50Ω匹配。射频(RF)电量的降低31.8%,图像均匀性的改善为18.5个百分点,并通过虚线图像采集揭示了高达42.2%的信噪比的增加,以体内确认学习。总之,所提出的线圈通过降低RF功率需求并提高图像均匀性和信噪比来扩展了临床前7T系统的可能性。达到了短暂的扫描和时间,或降低了RF暴露,导致体内实验期间的图像更好的图像和降低的动物健康风险。

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