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Conductors for commercial MRI magnets beyond NbTi: requirements and challenges

机译:商业MRI磁铁的导体超出NBTI:要求和挑战

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Magnetic resonance imaging (MRI), a powerful medical diagnostic tool, is the largest commercial application of superconductivity. The superconducting magnet is the largest and most expensive component of an MRI system. The magnet configuration is determined by competing requirements including optimized functional performance, patient comfort, ease of siting in a hospital environment, minimum acquisition and lifecycle cost including service. In this paper, we analyze conductor requirements for commercial MRI magnets beyond traditional NbTi conductors, while avoiding links to a particular magnet configuration or design decisions. Potential conductor candidates include MgB2, ReBCO and BSCCO options. The analysis shows that no MRI-ready non-NbTi conductor is commercially available at the moment. For some conductors, MRI specifications will be difficult to achieve in principle. For others, cost is a key barrier. In some cases, the prospects for developing an MRI-ready conductor are more favorable, but significant developments are still needed. The key needs include the development of, or significant improvements in: (a) conductors specifically designed for MRI applications, with form-fit-and-function readily integratable into the present MRI magnet technology with minimum modifications. Preferably, similar conductors should be available from multiple vendors; (b) conductors with improved quench characteristics, i.e. the ability to carry significant current without damage while in the resistive state; (c) insulation which is compatible with manufacturing and refrigeration technologies; (d) dramatic increases in production and long-length quality control, including large-volume conductor manufacturing technology. In-situ MgB2 is, perhaps, the closest to meeting commercial and technical requirements to become suitable for commercial MRI. Conductor technology is an important, but not the only, issue in introduction of HTS/MgB2 conductor into commercial MRI magnets. These new
机译:磁共振成像(MRI)是一种强大的医疗诊断工具,是超导性最大的商业应用。超导磁体是MRI系统的最大和最昂贵的组件。磁铁配置是通过竞争要求确定的,包括优化的功能性能,患者舒适性,易于在医院环境中的舒适性,最低收购和生命周期成本包括服务。在本文中,我们分析了商业MRI磁体的导线要求,超出了传统的NBTI导线,同时避免了特定磁体配置或设计决策的链接。潜在的指挥候选人包括MGB2,REBCO和BSCCO选项。分析表明,目前没有MRI准备的非NBTI导体可商购获得。对于某些导体,原则上难以实现MRI规范。对于其他人来说,成本是一个关键障碍。在某些情况下,制定MRI准备的导体的前景更有利于,但仍然需要显着的发展。关键需求包括开发或显着的改进:(a)专为MRI应用专门设计的导体,具有最小修改的形式配合和功能,可容易地集成到本发明的MRI磁铁技术中。优选地,类似的导体应从多个供应商处获得; (b)导体具有改善的淬火特性,即在电阻状态下携带显着电流而不会损坏的能力; (c)与制造和制冷技术相容的绝缘材料; (d)生产和长长度质量控制的巨大增加,包括大批量导体制造技术。现场MGB2是,也许是符合商业MRI的商业和技术要求最接近。导体技术是一个重要的,但不是唯一的问题,以便将HTS / MGB2导体引入商业MRI磁铁中。这些新的

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