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增强胰腺中的电场分布以改善 TTFields 治疗:计算建模研究。

Enhancing Electric Field Distribution in the Pancreas for Improved TTFields Therapy: A Computational Modeling Investigation.

出版信息

IEEE Trans Biomed Eng. 2024 Sep;71(9):2612-2619. doi: 10.1109/TBME.2024.3383818. Epub 2024 Aug 21.

Abstract

BACKGROUND

Tumor treating fields (TTFields) therapy has shown effectiveness in glioblastoma treatment and holds potential for other cancers. However, its application in pancreatic cancer and the distribution of electric fields in pancreas remain unexplored. This study aims to investigate the electric field distributions in pancreatic regions using different array configurations for TTFields therapy.

METHODS

Computational modelling was employed to simulate electric field distributions, and quantitative analysis was conducted. Human body impedance measurements were used to optimize the electric properties of the model. Various array configurations were examined to assess their impact on the electric field distributions.

RESULTS

The study revealed that well-positioned arrays, specifically the combination of 20-piece transducer arrays in anterior-posterior orientation and 13-piece transducer arrays in left-right orientation, consistently achieved electric fields exceeding the 1V/cm threshold in over 99.4% of the pancreas. Even with a reduced number of transducers (13 pieces for both orientations), sufficient electric field coverage was achieved, exceeding the threshold in over 92.9% of the pancreas. Additionally, different array placements within the same orientation were explored to address clinical challenges such as skin rash and patient anatomical variations.

CONCLUSIONS

This research lays the groundwork for understanding TTFields distribution within the abdomen, offering insights into optimizing array configurations for improved electric field delivery. These results offer promises of advancing TTFields therapy for pancreatic cancer towards clinical applications, and potentially enhancing treatment efficacy and patient outcomes.

摘要

背景

肿瘤治疗电场(TTFields)疗法已在治疗脑胶质瘤方面显示出疗效,并有可能用于治疗其他癌症。然而,其在胰腺癌中的应用以及电场在胰腺中的分布仍未得到探索。本研究旨在探讨使用不同的 TTFields 治疗阵列配置在胰腺区域的电场分布。

方法

采用计算模型模拟电场分布,并进行定量分析。人体阻抗测量用于优化模型的电特性。研究了各种阵列配置,以评估它们对电场分布的影响。

结果

研究表明,位置良好的阵列,特别是在前-后方向上的 20 个换能器阵列和在左-右方向上的 13 个换能器阵列的组合,在超过 99.4%的胰腺中始终实现了超过 1V/cm 的电场阈值。即使使用较少数量的换能器(两个方向各 13 个),也能在超过 92.9%的胰腺中实现足够的电场覆盖,超过阈值。此外,还研究了同一方向内的不同阵列放置方式,以解决皮肤疹和患者解剖变异等临床挑战。

结论

本研究为了解腹部内 TTFields 的分布奠定了基础,为优化阵列配置以提高电场输送提供了思路。这些结果有望推动 TTFields 疗法在胰腺癌中的临床应用,并有可能提高治疗效果和患者预后。

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