Very-low-field MRIs are becoming increasingly popular due to their portability and adaptability to different environments. They are being successfully used for various clinical applications, leading to a paradigm shift in the way imaging care is typically performed. The development of low-cost MRI scanner prototypes began a few years ago, with some interesting and promising open-source projects emerging in both hardware and software design. Using permanent magnets (PMs) to generate the static magnetic field B0 can substantially reduce the manufacturing cost while achieving satisfactory homogeneity. This article aims to explore the reasons behind discrepancies between magnet design and prototype performance in terms of magnetic field homogeneity. Understanding the impact of the practical implementation of magnet design could inform the development of more tolerant designs in future, simplifying subsequent B0 shimming procedures or even making them unnecessary. This work also evidences the impact of using different numerical model approximations in the modelling phase, proving how they also impact the quality of the design outcomes.
翻译:极低场磁共振成像设备因其便携性和对不同环境的适应性而日益普及。它们已成功应用于多种临床场景,正在引领成像诊疗方式的范式转变。低成本磁共振扫描仪样机的开发始于数年前,在硬件与软件设计领域均涌现出一些引人注目且前景广阔的开源项目。采用永磁体产生静态磁场B0可显著降低制造成本,同时实现令人满意的均匀性。本文旨在探究磁体设计与样机性能在磁场均匀性方面存在差异的原因。理解磁体设计在实际实现过程中的影响,可为未来开发容差性更强的设计提供参考,从而简化后续的B0匀场流程,甚至使其不再必要。本研究亦揭示了在建模阶段采用不同数值模型近似所产生的影响,证明了这些近似如何同样影响最终设计的质量。