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Improvement of SQUID Magnetometer System for Extending Application of Spinal Cord Evoked Magnetic Field Measurement

机译:SQUID磁力计系统的改进,以扩展脊髓诱发磁场的测量应用

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Superconducting quantum interference device (SQUID)-based spinal cord evoked magnetic field (SCEF) measurement systems are being developed for the diagnosis of spinal cord diseases such as myelopathy. Previous papers have reported several SQUID magnetometers optimized for the detection of the magnetic field evoked by axonal nerve activity at the neck of subjects in sitting or supine positions, thus enabling noninvasive functional imaging of the cervical spinal cord. In this study, we implemented two improvements in the SQUID SCEF system to extend its application range and to make it suitable for practical use in hospitals. One was a newly designed cryostat that was implemented in order to apply the SCEF measurement not only to the cervical region but also to wider regions such as the lumbar or sacral regions. The other improvement was the implementation of SQUID driving electronics to detect not only conventional fast SCEF components accompanied by action potentials but also slow SCEF components resulting from postsynaptic activity. We also implemented direct flux feedback using a set of reference sensors composed of three SQUID magnetometers arranged in an orthogonal orientation in order to reduce noise. We then performed an SCEF measurement using the improved system and successfully observed the distribution of the magnetic field from the sacral region with a peak amplitude of less than 10 fT.
机译:基于超导量子干扰设备(SQUID)的脊髓诱发磁场(SCEF)测量系统正在开发中,用于诊断脊髓疾病,例如脊髓病。以前的论文已经报道了几种SQUID磁力计,这些磁力计被优化用于检测坐姿或仰卧位的受治疗者颈部的轴突神经活动所引起的磁场,从而能够对颈脊髓进行无创功能成像。在这项研究中,我们对SQUID SCEF系统进行了两项改进,以扩展其应用范围,使其适合医院实际使用。一种是新设计的低温恒温器,其应用是为了将SCEF测量不仅应用于宫颈区域,而且应用于更宽的区域,例如腰部或骨区域。另一个改进是SQUID驱动电子设备的实现,它不仅可以检测伴随动作电位的常规快速SCEF组件,还可以检测突触后活动导致的慢速SCEF组件。我们还使用一组由三个SQUID磁力计组成的参考传感器来实现直接通量反馈,这三个SQUID磁力计以正交方向排列,以减少噪声。然后,我们使用改进的系统进行了SCEF测量,并成功地观察了来自amplitude骨区域的磁场分布,其峰值幅度小于10 fT。

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