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Design of virtual instrument for automatic temperature visualization in magnetic fields using LabVIEW in combination with fiber-optical temperature measurement

机译:用LabVIEW与光纤 - 光学温度测量结合使用LabVIEW磁场自动温度可视化的虚拟仪器设计

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Temperature measurement in magnetic fields is indispensable for Magnetic Resonance safety studies and for temperature calibrations during Magnetic Resonance applications. A selection of these procedures is subject to the application of MR-compatible robotic systems. The existing problem for the software version NI LabVIEW 2013 is the lack of an instrument to automatically process data from a fiber-optical temperature measurement device. In this work a virtual instrument for this specific software version is designed in order to automatically visualize temperature in magnetic fields. The setup consists of a magnetic field tolerant fiber-optical temperature measurement device being connected to temperature samples and a Microsoft based Computer System. Results show a functional software instrument for automatic temperature measurement with a maximum delay of 0.14 s. We conclude that the developed instrument is highly suitable for automated biomedical applications and can be adapted to future versions of LabVIEW software.
机译:磁场中的温度测量对于磁共振安全性研究和磁共振应用期间的温度校准是必不可少的。这些程序的选择符合MR兼容机器人系统的应用。软件版本NI LabVIEW 2013的现有问题是缺乏从光纤温度测量装置自动处理数据的仪器。在此工作中,设计了该特定软件版本的虚拟仪器,以便在磁场中自动可视化温度。该设置包括磁场容差的光纤 - 光学温度测量装置,其连接到温度样本和基于微软的计算机系统。结果显示,用于自动温度测量的功能性软件仪器,最大延迟为0.14秒。我们得出结论,发达的仪器非常适合自动化生物医学应用,可以适用于LabVIEW软件的未来版本。

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