首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Magnetometry of injury currents from human nerve and muscle specimens using superconducting quantum interferences devices.
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Magnetometry of injury currents from human nerve and muscle specimens using superconducting quantum interferences devices.

机译:使用超导量子干涉仪对人体神经和肌肉标本的损伤电流进行磁力测定。

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摘要

Acute lesions of polarized membranes lead to slowly decaying ('near-DC') injury currents driven by the transmembrane resting potential gradient. Here we report the first recordings of injury-related near-DC magnetic fields from human nerve and muscle specimens in vitro using Superconducting Quantum Interference Devices (SQUIDs) operated in a conventional magnetically shielded room in a clinical environment. The specimen position was modulated sinusoidally beneath the sensor array by a non-magnetically fabricated scissors lift to improve the signal-to-noise ratio for near-DC fields. Depending on the specimen geometry the field patterns showed dipolar or quadrupolar aspects. The slow decay of human nerve and muscle injury currents was monitored for several hours from a distance of a few centimeters. Thus DC-magnetometry provides a sensitivity which might allow the remote detection of injury currents also in vivo.
机译:极化膜的急性损伤导致跨膜静息电位梯度驱动的缓慢衰减(“近DC”)损伤电流。在这里,我们报告在临床环境中使用常规磁屏蔽室中运行的超导量子干扰设备(SQUID)在体外从人神经和肌肉标本中获取与损伤相关的近DC磁场的第一批记录。通过非磁性制造的剪刀提升器,在传感器阵列下方以正弦形式调制样品位置,以改善近DC场的信噪比。取决于样品的几何形状,场模式显示出偶极或四极方面。在几厘米的距离内,对人类神经和肌肉损伤电流的缓慢衰减进行了几个小时的监控。因此,DC磁力计提供了灵敏度,该灵敏度可能还允许在体内也远程检测损伤电流。

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