Faculty of Electrical Engineering, University of Ljubljana, Tržaška c. 25, SI-1000, Ljubljana, Slovenia,
J Membr Biol. 2013 Nov;246(11):833-42. doi: 10.1007/s00232-013-9567-2. Epub 2013 Jun 19.
Electroporation-based treatment combining high-voltage electric pulses and poorly permanent cytotoxic drugs, i.e., electrochemotherapy (ECT), is currently used for treating superficial tumor nodules by following standard operating procedures. Besides ECT, another electroporation-based treatment, nonthermal irreversible electroporation (N-TIRE), is also efficient at ablating deep-seated tumors. To perform ECT or N-TIRE of deep-seated tumors, following standard operating procedures is not sufficient and patient-specific treatment planning is required for successful treatment. Treatment planning is required because of the use of individual long-needle electrodes and the diverse shape, size and location of deep-seated tumors. Many institutions that already perform ECT of superficial metastases could benefit from treatment-planning software that would enable the preparation of patient-specific treatment plans. To this end, we have developed a Web-based treatment-planning software for planning electroporation-based treatments that does not require prior engineering knowledge from the user (e.g., the clinician). The software includes algorithms for automatic tissue segmentation and, after segmentation, generation of a 3D model of the tissue. The procedure allows the user to define how the electrodes will be inserted. Finally, electric field distribution is computed, the position of electrodes and the voltage to be applied are optimized using the 3D model and a downloadable treatment plan is made available to the user.
基于电穿孔的治疗方法结合了高电压电脉冲和非永久性细胞毒性药物,即电化学疗法(ECT),目前按照标准操作程序用于治疗浅表肿瘤结节。除了 ECT,另一种基于电穿孔的治疗方法,即非热不可逆电穿孔(N-TIRE),也能有效地消融深部肿瘤。为了对深部肿瘤进行 ECT 或 N-TIRE,按照标准操作程序是不够的,需要针对每个患者进行特定的治疗计划,以实现成功的治疗。需要进行治疗计划,是因为使用了个体长针电极,以及深部肿瘤的形状、大小和位置的多样性。许多已经进行浅表转移 ECT 的机构都将受益于治疗计划软件,该软件将能够制定针对患者的治疗计划。为此,我们开发了一种基于网络的治疗计划软件,用于规划基于电穿孔的治疗,而无需用户(例如临床医生)具备先前的工程知识。该软件包括自动组织分割的算法,以及分割后组织 3D 模型的生成。该过程允许用户定义电极将如何插入。最后,计算电场分布,使用 3D 模型优化电极位置和要施加的电压,并为用户提供可下载的治疗计划。