Mitigation of impedance changes due to electroporation therapy using bursts of high-frequency bipolar pulses
For electroporation-based therapies, accurate modeling of the electric field distribution within the target tissue is important for predicting the treatment volume. In response to conventional, unipolar pulses, the electrical impedance of a tissue varies as a function of the local electric field, le...
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Veröffentlicht in: | Biomedical engineering online 2015-08, Vol.14 Suppl 3 (3), p.S3-S3 |
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