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Magnetic Field Structure and Induced Electric Current Distribution on a Cylindrical Model: Application to Magnetic Nerve Stimulation

Magnetic Field Structure and Induced Electric Current Distribution on a Cylindrical Model: Application to Magnetic Nerve Stimulation
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摘要 We study the relation between the magnetic field structure and the induced electric-current distribution based on a cylindrical model composed of a uniform electrically conductive medium. When the time-varying magnetic fields are axisymmetrically applied in the axial direction of the model, the electric fields are induced around the central axis in accordance with Faradays law. We examine the eddy-current distributions generated by loop-coils with various geometries carrying an alternating electric current. It is shown that the radial structure of the induced fields can significantly be controlled by the loop coil geometry, which will be suitable for practical use especially in magnetic nerve stimulation on bioelectromagneties, if we appropriately p/ace the exciting coil with optimum geometry. We study the relation between the magnetic field structure and the induced electric-current distribution based on a cylindrical model composed of a uniform electrically conductive medium. When the time-varying magnetic fields are axisymmetrically applied in the axial direction of the model, the electric fields are induced around the central axis in accordance with Faradays law. We examine the eddy-current distributions generated by loop-coils with various geometries carrying an alternating electric current. It is shown that the radial structure of the induced fields can significantly be controlled by the loop coil geometry, which will be suitable for practical use especially in magnetic nerve stimulation on bioelectromagneties, if we appropriately p/ace the exciting coil with optimum geometry.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2009年第7期115-118,共4页 中国物理快报(英文版)
关键词 Mathematical physics Accelerators beams and electromagnetism Medical physics Biological physics Mathematical physics Accelerators, beams and electromagnetism Medical physics Biological physics
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