替代性混合MPI-MRI成像系统设计:超导磁场发生器拓扑结构

J. Franke, U. Heinen, V. Niemann, M. Heidenreich, T. Buzug
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引用次数: 3

摘要

结果表明,混合MPI-MRI MFG可以实现超导拓扑结构,从而可以在单一设备中获得连续高分辨率MPI和高质量MRI数据,并具有多种小鼠和大鼠的软组织对比。此外,根据技术上可行和生物耐受的驱动场强和/或期望的视野,超导MFG可以在独立于MRI区域磁场强度的SF梯度强度方面实现大范围。这可以通过选择专用梯度增强线圈电流密度来实现。由于MFG拓扑结构分别描绘了MPI和MRI的两个分离的成像区域,因此受试者必须通过简单的平移运动进行传输,而每种模式的信号检测器可以靠近成像体积,从而允许两种模式的高灵敏度接收线圈。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Alternative hybrid MPI-MRI imaging system design: Superconductive field generator topology
It was shown that a hybrid MPI-MRI MFG can be realized as superconductive topology which renders the possibility of acquiring sequentially high resolution MPI and high quality MRI data with versatile soft tissue contrast of mice and rats in a single device. Furthermore, depending on the technically feasible and biologically tolerable drive field strength and/or desired field of view, the superconductive MFG can be realized in a broad range in terms of the SF gradient strength independently to the magnetic field strength of the MRI region. This can be realized by selecting a dedicated gradient enhancing coil current density. As this MFG topology depicts two separated imaging regions for MPI and MRI, respectively, the subject hast to be transported by a simple translational movement whereas the signal detector of each modality can be located closely to the imaging volume which allows in both modalities high sensitivity receiving coils.
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