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计算机模拟建立了一种新型的换能器阵列放置方式,可将治疗性交变电场(TTFields)的传递范围扩展到脑干胶质瘤患者的幕下区域。

Computational simulations establish a novel transducer array placement arrangement that extends delivery of therapeutic TTFields to the infratentorium of patients with brainstem gliomas.

作者信息

Ramirez-Fort Marigdalia K, Naveh Ariel, McClelland Shearwood, Gilman Casey K, Fort Migdalia, Mendez Melissa, Matta Jaime, Bomzon Ze'ev, Lange Christopher S

机构信息

Life Sciences, BioFort, Guaynabo, Puerto Rico, United States.

Pathology and Pathophysiology, San Juan Bautista School of Medicine, Caguas, Puerto Rico, United States.

出版信息

Rep Pract Oncol Radiother. 2021 Dec 30;26(6):1045-1050. doi: 10.5603/RPOR.a2021.0132. eCollection 2021.

Abstract

BACKGROUND AND PURPOSE

Tumor treating fields (TTFields) are a non-invasive, efficacious treatment modality currently approved for supratentorial glioblastomas. Despite their ability to improve overall survival in supratentorial tumors, the current placement of arrays is limited to the supratentorial head, precluding its use in infratentorial tumors. Infratentorial malignancies are in need of new therapy modalities given their poor prognoses in both children and adults. The aim of this research is to determine whether rearrangement of TTFields may allow for management of infratentorial tumors.

MATERIALS AND METHODS

Delivery of TTFields using Novocure's prototype Optune™ device human male head model was simulated based on brain MRIs from patients with brainstem gliomas to develop a novel array layout designed to extend adequate infratentorial coverage.

RESULTS

Array placement on the vertex, bilateral posterolateral occiput, and superior-posterior neck achieved intensities above 1.1 V/cm (average 1.7 V/cm; maximum 2.3 V/cm) in the vertical field direction and above 1 V/cm (average 2 V/cm; maximum 2.8 V/cm) in the horizontal field direction of the infratentorium. The calculated field intensity within the simulated tumors were in the therapeutic range and demonstrated the effective delivery of TTFields to the infratentorial brain.

CONCLUSIONS

Our findings suggest that rearrangement of the TTFields standard array with placement of electrodes on the vertex, bilateral posterolateral occiput, and superior-posterior neck allows for adequate electric field distribution in the infratentorium that is within the therapeutic range.

摘要

背景与目的

肿瘤治疗电场(TTFields)是一种目前已被批准用于幕上胶质母细胞瘤的非侵入性有效治疗方式。尽管其能够提高幕上肿瘤的总生存率,但目前电极阵列的放置仅限于幕上头区,无法用于幕下肿瘤。鉴于幕下恶性肿瘤在儿童和成人中预后均较差,因此需要新的治疗方式。本研究的目的是确定重新布置TTFields是否可用于治疗幕下肿瘤。

材料与方法

基于脑干胶质瘤患者的脑部磁共振成像(MRI),使用诺沃库雷公司的原型Optune™设备对男性人体头部模型进行TTFields传输模拟,以开发一种旨在提供足够幕下覆盖范围的新型阵列布局。

结果

在幕下垂直场方向上,将电极阵列放置在头顶、双侧枕后外侧和颈后上侧时,强度高于1.1V/cm(平均1.7V/cm;最大2.3V/cm);在水平场方向上,强度高于1V/cm(平均2V/cm;最大2.8V/cm)。模拟肿瘤内计算出的场强在治疗范围内,表明TTFields可有效传输至幕下脑区。

结论

我们的研究结果表明,重新布置TTFields标准阵列,将电极放置在头顶、双侧枕后外侧和颈后上侧,可在幕下实现治疗范围内的适当电场分布。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a79/8726444/abd44e37d96e/rpor-26-6-1045f1.jpg

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