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使用磁刺激神经电流探测仪进行周围神经功能的磁测量。

Magnetic measurements of peripheral nerve function using a neuromagnetic current probe.

机构信息

Department of Physics and Astronomy, Ball State University, Muncie, IN 47306, USA.

出版信息

Exp Biol Med (Maywood). 2010 Feb;235(2):159-69. doi: 10.1258/ebm.2009.009306.

Abstract

The progress made during the last three decades in mathematical modeling and technology development for the recording of magnetic fields associated with cellular current flow in biological tissues has provided a means of examining action currents more accurately than that of using traditional electrical recordings. It is well known to the biomedical research community that the room-temperature miniature toroidal pickup coil called the neuromagnetic current probe can be employed to measure biologically generated magnetic fields in nerve and muscle fibers. In contrast to the magnetic resonance imaging technique, which relies on the interaction between an externally applied magnetic field and the magnetic properties of individual atomic nuclei, this device, along with its room-temperature, low-noise amplifier, can detect currents in the nano-Ampere range. The recorded magnetic signals using neuromagnetic current probes are relatively insensitive to muscle movement since these probes are not directly connected to the tissue, and distortions of the recorded data due to changes in the electrochemical interface between the probes and the tissue are minimal. Contrary to the methods used in electric recordings, these probes can be employed to measure action currents of tissues while they are lying in their own natural settings or in saline baths, thereby reducing the risk associated with elevating and drying the tissue in the air during experiments. This review primarily describes the investigations performed on peripheral nerves using the neuromagnetic current probe. Since there are relatively few publications on these topics, a comprehensive review of the field is given. First, magnetic field measurements of isolated nerve axons and muscle fibers are described. One of the important applications of the neuromagnetic current probe to the intraoperative assessment of damaged and reconstructed nerve bundles is summarized. The magnetic signals of crushed nerve axons and the determination of the conduction velocity distribution of nerve bundles are also reviewed. Finally, the capabilities and limitations of the probe and the magnetic recordings are discussed.

摘要

过去三十年中,在数学建模和技术发展方面取得了进展,这些进展为记录生物组织中与细胞电流相关的磁场提供了一种手段,比使用传统的电记录方法更能准确地检查动作电流。生物医学研究界众所周知,室温微型环形拾取线圈,即神经磁流探针,可用于测量神经和肌肉纤维中产生的生物磁场。与磁共振成像技术不同,磁共振成像技术依赖于外加磁场与单个原子核磁性质之间的相互作用,该设备及其室温低噪声放大器可以检测纳安范围内的电流。使用神经磁流探针记录的磁信号对肌肉运动相对不敏感,因为这些探针与组织没有直接连接,并且由于探针和组织之间电化学界面的变化,记录数据的失真最小。与电记录中使用的方法相反,这些探针可用于测量组织的动作电流,而无需将组织置于其自身的自然环境或盐水中,从而降低了在实验过程中升高和干燥组织的风险。本综述主要描述了使用神经磁流探针对周围神经进行的研究。由于关于这些主题的出版物相对较少,因此对该领域进行了全面的综述。首先,描述了对分离的神经轴突和肌肉纤维的磁场测量。总结了神经磁流探针在术中评估受损和重建神经束中的重要应用之一。还回顾了压碎神经轴突的磁信号和神经束传导速度分布的确定。最后,讨论了探针和磁记录的功能和局限性。

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