技术更新先进的超高场动物MRI系统

Yaohui Wang, Guyue Zhou, Haoran Chen, Pengfei Wu, Wenhui Yang, Feng Liu, Qiuliang Wang
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引用次数: 0

摘要

动物磁共振成像(MRI)系统通常比传统的人类MRI系统提供更优越的成像性能,使其成为临床前研究的主流仪器。由于各种系统组件的多面性和集成调试的复杂性,实现这些动物MRI系统的高性能是具有挑战性的。本工作描述了一个7 T动物MRI系统的设计、制造、测量和集成,该系统展示了几个性能亮点。磁体和梯度组件均采用超屏蔽策略,便于系统安装、维护和调试。主磁场表现出可接受的均匀性和稳定性,由于零力控制,梯度线圈在机械上可靠。动物核磁共振成像系统使用专有的成像软件进行调试,以生成幽灵、水果和生物体的图像。将进行进一步的研究调查,以促进更多具有增强功能的科学产出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Ultrahigh-field animal MRI system with advanced technological update

Ultrahigh-field animal MRI system with advanced technological update
Animal magnetic resonance imaging (MRI) systems typically deliver superior imaging performance over conventional human MRI systems, making them a prevailing instrument in preclinical research. It is challenging to achieve the high performance of these animal MRI systems, due to the multifaceted nature of the various system components and the complexity of integration debugging. This work described the design, fabrication, measurement and integration of a 7 T animal MRI system, which exhibits several performance highlights. Both the magnet and gradient assembly adopted an ultra-shielding strategy, facilitating ease of system installation, maintenance and debugging. The main magnetic field exhibits acceptable homogeneity and stability, and the gradient coil is mechanically reliable thanks to zero-force control. The animal MRI system underwent debugging using proprietary imaging software to generate images of phantoms, fruits and organisms. Further research investigation will be performed to promote more scientific outputs with enhanced functional capabilities.
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