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Open Source 3D Multipurpose Measurement System with Submillimetre Fidelity and First Application in Magnetic Resonance

机译:亚毫米级保真度的开源3D多功能测量系统首次在磁共振中应用

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摘要

Magnetic resonance imaging (MRI) is the mainstay of diagnostic imaging, a versatile instrument for clinical science and the subject of intense research interest. Advancing clinical science, research and technology of MRI requires high fidelity measurements in quantity, location and time of the given physical property. To meet this goal a broad spectrum of commercial measurement systems has been made available. These instruments frequently share in common that they are costly and typically employ closed proprietary hardware and software. This shortcoming makes any adjustment for a specified application difficult if not prohibitive. Recognizing this limitation this work presents COSI Measure, an automated open source measurement system that provides submillimetre resolution, robust configuration and a large working volume to support a versatile range of applications. The submillimetre fidelity and reproducibility/backlash performance were evaluated experimentally. Magnetic field mapping of a single ring Halbach magnet, a 3.0 T and a 7.0 T MR scanner as well as temperature mapping of a radio frequency coil were successfully conducted. Due to its open source nature and versatile construction, the system can be easily modified for other applications. In a resource limited research setting, COSI Measure makes efficient use of laboratory space, financial resources and collaborative efforts.
机译:磁共振成像(MRI)是诊断成像的主体,它是临床科学的多功能仪器,并且引起了广泛的研究兴趣。先进的MRI临床科学,研究和技术要求在给定物理特性的数量,位置和时间上进行高保真度测量。为了实现这个目标,已经提供了广泛的商业测量系统。这些仪器通常共同之处在于它们价格昂贵,并且通常使用封闭的专有硬件和软件。这种缺点使得对指定应用程序的任何调整都是困难的,即使不是禁止的。认识到这一局限性,这项工作提出了COSI Measure,这是一种自动化的开源测量系统,可提供亚毫米的分辨率,坚固的配置和较大的工作量,以支持各种应用。通过实验评估了亚毫米保真度和可再现性/齿隙性能。成功地进行了单环Halbach磁体,3.0 T和7.0 T MR扫描仪的磁场测绘以及射频线圈的温度测绘。由于其开源特性和通用结构,该系统可以轻松修改以用于其他应用。在资源有限的研究环境中,COSI Measure可有效利用实验室空间,财务资源和协作成果。

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