Faculty of Electrical Engineering, University of Ljubljana, Trzaska 25, 1000, Ljubljana, Slovenia.
J Membr Biol. 2010 Jul;236(1):147-53. doi: 10.1007/s00232-010-9274-1. Epub 2010 Jul 2.
Treatment of cutaneous and subcutaneous tumors with electrochemotherapy has become a regular clinical method, while treatment of deep-seated tumors is still at an early stage of development. We present a method for preparing a dedicated patient-specific, computer-optimized treatment plan for electrochemotherapy of deep-seated tumors based on medical images. The treatment plan takes into account the patient's anatomy, tissue conductivity changes during electroporation and the constraints of the pulse generator. Analysis of the robustness of a treatment plan made with this method shows that the effectiveness of the treatment is not affected significantly by small single errors in electrode positioning. However, when many errors occur simultaneously, the resulting drop in effectiveness is larger, which means that it is necessary to be as accurate as possible in electrode positioning. The largest effect on treatment effectiveness stems from uncertainties in dielectric properties and electroporation thresholds of treated tumors and surrounding tissues, which emphasizes the need for more accurate measurements and more research. The presented methods for treatment planning and robustness analysis allow quantification of the treatment reproducibility and enable the setting of suitable safety margins to improve the likelihood of successful treatment of deep-seated tumors by electrochemotherapy.
电化学疗法治疗皮肤和皮下肿瘤已成为一种常规的临床方法,而深部肿瘤的治疗仍处于发展的早期阶段。我们提出了一种基于医学图像为深部肿瘤电化学治疗制备专用的、患者个体化的、计算机优化的治疗计划的方法。该治疗计划考虑了患者的解剖结构、电穿孔过程中组织电导率的变化以及脉冲发生器的限制。对使用这种方法制定的治疗计划的稳健性进行分析表明,电极定位的小单一误差不会显著影响治疗的效果。然而,当同时出现许多误差时,治疗效果的下降幅度会更大,这意味着电极定位需要尽可能精确。对治疗效果影响最大的是处理肿瘤和周围组织的介电特性和电穿孔阈值的不确定性,这强调了需要更准确的测量和更多的研究。所提出的治疗计划和稳健性分析方法允许量化治疗的可重复性,并设置合适的安全裕度,以提高电化学疗法治疗深部肿瘤的成功率。