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脑胶质瘤瘤周水肿、肿瘤大小和肿瘤位置对现实 3D 大鼠脑胶质瘤模型中交变电场(AEF)治疗的影响:一项计算研究。

Impact of glioma peritumoral edema, tumor size, and tumor location on alternating electric fields (AEF) therapy in realistic 3D rat glioma models: a computational study.

机构信息

Baylor University, Waco, TX, 76706, United States of America.

Loma Linda University, Loma Linda, CA, 92350, United States of America.

出版信息

Phys Med Biol. 2024 Apr 4;69(8). doi: 10.1088/1361-6560/ad2e6c.

Abstract

Alternating electric fields (AEF) therapy is a treatment modality for patients with glioblastoma. Tumor characteristics such as size, location, and extent of peritumoral edema may affect the AEF strength and distribution. We evaluated the sensitivity of the AEFs in a realistic 3D rat glioma model with respect to these properties.The electric properties of the peritumoral edema were varied based on calculated and literature-reported values. Models with different tumor composition, size, and location were created. The resulting AEFs were evaluated in 3D rat glioma models.In all cases, a pair of 5 mm diameter electrodes induced an average field strength >1 V cm. The simulation results showed that a negative relationship between edema conductivity and field strength was found. As the tumor core size was increased, the average field strength increased while the fraction of the shell achieving >1.5 V cmdecreased. Increasing peritumoral edema thickness decreased the shell's mean field strength. Compared to rostrally/caudally, shifting the tumor location laterally/medially and ventrally (with respect to the electrodes) caused higher deviation in field strength.This study identifies tumor properties that are key drivers influencing AEF strength and distribution. The findings might be potential preclinical implications.

摘要

交变电场(AEF)疗法是胶质母细胞瘤患者的一种治疗方式。肿瘤的大小、位置和瘤周水肿的范围等特征可能会影响 AEF 的强度和分布。我们针对这些特性,在具有实际三维大鼠脑胶质瘤模型中评估了 AEF 的敏感性。根据计算和文献报道的值,改变了瘤周水肿的电学特性。创建了具有不同肿瘤组成、大小和位置的模型。在所有情况下,一对 5 毫米直径的电极都能产生平均场强 >1 V cm。模拟结果表明,水肿电导率与场强之间存在负相关关系。随着肿瘤核心大小的增加,平均场强增加,而达到>1.5 V cm 的壳层分数减少。增加瘤周水肿厚度会降低壳层的平均场强。与前后方向相比,将肿瘤位置向左右方向/中线以及腹侧(相对于电极)移动会导致场强的偏差更大。这项研究确定了影响 AEF 强度和分布的关键肿瘤特性。这些发现可能具有潜在的临床前意义。

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