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Optimizing bipolar radiofrequency ablation treatment by means of pulsed currents

机译:利用脉冲电流优化双极射频消融治疗

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Given the high mortality rate, liver cancer is considered to be a difficult cancer to treat. Consequently, alternative strategies are being developed such as radiofrequency ablation (RFA). RFA applies radiofrequent currents leading to local heating of the tumoral tissue. Accurate numerical modeling contributes to a better knowledge of the physical phenomena and allows optimizations. In this work, the bipolar radiofrequency ablation technique is explored followed by an optimization by means of pulsed currents. Numerical results clearly show the larger ablation zones due to the pulsed currents. Hence, pulsed bipolar RFA increases the efficacy and has the potential to be incorporated in clinical practice.
机译:鉴于高死亡率,肝癌被认为是难以治疗的癌症。因此,正在开发替代策略,例如射频消融(RFA)。 RFA施加射频电流,导致肿瘤组织局部发热。精确的数值建模有助于更好地了解物理现象并进行优化。在这项工作中,探索了双极射频消融技术,随后通过脉冲电流进行了优化。数值结果清楚地显示了由于脉冲电流而产生的更大的消融区域。因此,脉冲双极RFA可以提高疗效,并有可能被纳入临床实践。

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