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Predicting irreversible electroporation-induced tissue damage by means of magnetic resonance electrical impedance tomography

机译:通过磁共振电阻抗层析成像预测不可逆的电穿孔引起的组织损伤

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摘要

Irreversible electroporation (IRE) is gaining importance in routine clinical practice for nonthermal ablation of solid tumors. For its success, it is extremely important that the coverage and exposure time of the treated tumor to the electric field is within the specified range. Measurement of electric field distribution during the electroporation treatment can be achieved using magnetic resonance electrical impedance tomography (MREIT). Here, we show improved MREIT-enabled electroporation monitoring of IRE-treated tumors by predicting IRE-ablated tumor areas during IRE of mouse tumors in vivo. The in situ prediction is enabled by coupling MREIT with a corresponding Peleg-Fermi mathematical model to obtain more informative monitoring of IRE tissue ablation by providing cell death probability in the IRE-treated tumors. This technique can potentially be used in electroporation-based clinical applications, such as IRE tissue ablation and electrochemotherapy, to improve and assure the desired treatment outcome.
机译:不可逆电穿孔(IRE)在常规临床实践中对实体瘤的非热消融越来越重要。对于其成功而言,将治疗的肿瘤在电场中的覆盖时间和暴露时间在规定范围内非常重要。可以使用磁共振电阻抗断层扫描(MREIT)来测量电穿孔处理过程中的电场分布。在这里,我们通过预测小鼠体内IRE的IRE消融肿瘤区域,显示了对IRE治疗的肿瘤的改良MREIT功能电穿孔监测。通过将MREIT与相应的Peleg-Fermi数学模型耦合,可以通过在IRE治疗的肿瘤中提供细胞死亡概率来获得对IRE组织消融的更多信息监测,从而实现原位预测。该技术可以潜在地用于基于电穿孔的临床应用中,例如IRE组织消融和电化学疗法,以改善并确保所需的治疗结果。

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