The need to correctly predict the voltage across terminals of mm-sized coils, with ferrite core, to be employed for magnetic stimulation of the peripheral neural system is the motivation for this work. In such applications, which rely on a capacitive discharge on the coil to realise a transient voltage curve of duration and strength suitable for neural stimulation, the correct modelling of the non-linearity of the ferrite core is critical. A demonstration of how a finite-difference model of the considered coils, which include a model of the current-controlled inductance in the coil, can be used to correctly predict the time-domain voltage waveforms across the terminals of a test coil is presented. Five coils of different dimensions, loaded with ferrite cores, have been fabricated and tested: the measured magnitude and width of the induced pulse are within 10% of simulated values.
Ferrite core non-linearity in coils for magnetic neurostimulation.
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作者:RamRakhyani Anil Kumar, Lazzi Gianluca
| 期刊: | Healthcare Technology Letters | 影响因子: | 3.300 |
| 时间: | 2014 | 起止号: | 2014 Dec 16; 1(4):87-91 |
| doi: | 10.1049/htl.2014.0087 | ||
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