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Simplified realistic human head model for simulating Tumor Treating Fields (TTFields)

机译:用于模拟肿瘤治疗场(TTFields)的简化逼真的人体头部模型

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Tumor Treating Fields (TTFields) are alternating electric fields in the intermediate frequency range (100-300 kHz) of low-intensity (1-3 V/cm). TTFields are an anti-mitotic treatment against solid tumors, which are approved for Glioblastoma Multiforme (GBM) patients. These electric fields are induced non-invasively by transducer arrays placed directly on the patient's scalp. Cell culture experiments showed that treatment efficacy is dependent on the induced field intensity. In clinical practice, a software called NovoTalTM uses head measurements to estimate the optimal array placement to maximize the electric field delivery to the tumor. Computational studies predict an increase in the tumor's electric field strength when adapting transducer arrays to its location. Ideally, a personalized head model could be created for each patient, to calculate the electric field distribution for the specific situation. Thus, the optimal transducer layout could be inferred from field calculation rather than distance measurements. Nonetheless, creating realistic head models of patients is time-consuming and often needs user interaction, because automated image segmentation is prone to failure. This study presents a first approach to creating simplified head models consisting of convex hulls of the tissue layers. The model is able to account for anisotropic conductivity in the cortical tissues by using a tensor representation estimated from Diffusion Tensor Imaging. The induced electric field distribution is compared in the simplified and realistic head models. The average field intensities in the brain and tumor are generally slightly higher in the realistic head model, with a maximal ratio of 114% for a simplified model with reasonable layer thicknesses. Thus, the present pipeline is a fast and efficient means towards personalized head models with less complexity involved in characterizing tissue interfaces, while enabling accurate predictions of electric field distribution.
机译:肿瘤治疗场(TTFields)是低强度(1-3 V / cm)的中频范围(100-300 kHz)中的交变电场。 TTFields是针对实体瘤的抗有丝分裂疗法,已获准用于多形性胶质母细胞瘤(GBM)患者。这些电场由直接放置在患者头皮上的换能器阵列无创地感应。细胞培养实验表明,治疗效果取决于诱导的电场强度。在临床实践中,称为NovoTalTM的软件使用头部测量来估计最佳阵列放置,以最大程度地将电场输送到肿瘤。计算研究预测,当使换能器阵列适应其位置时,肿瘤的电场强度会增加。理想情况下,可以为每个患者创建个性化的头部模型,以计算特定情况下的电场分布。因此,可以从现场计算而不是距离测量中推断出最佳的换能器布局。但是,创建现实的患者头部模型非常耗时,并且经常需要用户交互,因为自动图像分割很容易失败。这项研究提出了创建由组织层的凸包组成的简化头部模型的第一种方法。该模型能够通过使用由扩散张量成像估计的张量表示来解释皮质组织中的各向异性电导率。在简化和逼真的头部模型中比较了感应电场分布。在现实的头部模型中,大脑和肿瘤的平均电场强度通常略高,对于具有合理层厚度的简化模型,其最大比例为114%。因此,本发明的管线是朝向个性化头部模型的快速且有效的手段,其具有较少表征组织界面的复杂性,同时能够准确预测电场分布。

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