Abstract 1814
Background
Tumor Treating Fields (TTFields) are intermediate frequency, alternating electric fields that non-invasively treat cancer. Transducer arrays positioned on the skin in proximity to the targeted tumor transmit TTFields. A post-hoc analysis [Ballo et al. Red Jour. 2019 In Press] has shown that increased patient usage (percent of time on active treatment) and intensity of TTFields delivery direct to the tumor improved survival. Optimal array positioning may enhance TTFields intensity at the tumor site to improve patient experience and survival. Minimization of array exposure area would enhance patient comfort levels and usage to improve survival. Optimizing TTFields delivery and distribution depends on array positioning and geometry, patient anatomy, and the heterogeneous electrical properties of different tissues. We present methodology to optimize TTFields delivery using numerical simulations.
Methods
TTFields delivery to the brain, lung, and abdomen utilizing representative computational models was investigated. The effects of transducer array size and position on field distribution within the phantoms was analyzed, and an approach to optimize TTFields delivery was developed.
Results
Field intensity was typically the greatest in between arrays, with larger arrays transmitting higher field power. Anatomical features, such as bones (spine) or a resection cavity significantly influenced field intensity within this region. A generalized methodology to optimize TTFields delivery for improved patient care was based on: (1) Striking a balance between maximal field intensity (largest arrays feasible) and minimal skin exposure to arrays in the disease area; (2) Positioning virtual arrays on a representative, computational patient model to test tumor localization between arrays, to simulate TTFields delivery to patient, and to assess optimal delivery; and (3) Applying an iterative algorithm to shift arrays around their initial positions until field intensity is maximized directly to the tumor bed.
Conclusions
A generalized treatment methodology as presented by these data will optimize TTFields delivery to the tumor site. Effective TTFields treatment planning is expected to improve patient outcomes.
Clinical trial identification
Editorial acknowledgement
Legal entity responsible for the study
Novocure.
Funding
Novocure.
Disclosure
N. Urman: Full / Part-time employment: Novocure; Shareholder / Stockholder / Stock options: Novocure. Z. Bomzon: Full / Part-time employment: Novocure; Shareholder / Stockholder / Stock options: Novocure. H.S. Hershkovich: Full / Part-time employment: Novocure; Shareholder / Stockholder / Stock options: Novocure. E.D. Kirson: Full / Part-time employment: Novocure; Shareholder / Stockholder / Stock options: Novocure. A. Naveh: Full / Part-time employment: Novocure; Shareholder / Stockholder / Stock options: Novocure. R. Shamir: Full / Part-time employment: Novocure; Shareholder / Stockholder / Stock options: Novocure. E. Fedorov: Full / Part-time employment: Novocure; Shareholder / Stockholder / Stock options: Novocure. C. Wenger: Full / Part-time employment: Novocure; Shareholder / Stockholder / Stock options: Novocure. U. Weinberg: Full / Part-time employment: Novocure; Shareholder / Stockholder / Stock options: Novocure.
Resources from the same session
4021 - Prospective pathological experience with research biopsies in the context of clinical trials at Vall d’Hebron Institute of Oncology
Presenter: Paolo Nuciforo
Session: Poster Display session 3
Resources:
Abstract
5603 - Development of a comprehensive next-generation targeted sequencing assay for detection of gene-fusions in solid tumors
Presenter: Vinay Mittal
Session: Poster Display session 3
Resources:
Abstract
4952 - Next-generation sequencing for better treatment strategy of cancer of unknown primary (CUP)
Presenter: Kang Kook Lee
Session: Poster Display session 3
Resources:
Abstract
4590 - Circulating-free DNA analysis from long-term surviving metastatic colorectal cancer patients undergoing surgery for resectable disease.
Presenter: Michele Ghidini
Session: Poster Display session 3
Resources:
Abstract
3696 - Ultra-sensitive detection of circulating tumor DNA identifies patients in high risk of recurrence in early stages melanoma
Presenter: Filip Janku
Session: Poster Display session 3
Resources:
Abstract
4295 - Identification of the founder BRCA1 mutation c.4117G>T (p.Glu1373*) recurring in Abruzzo and Lazio regions of Central Italy and predisposing to breast/ovarian and BRCA1-related cancers
Presenter: Daniela Di Giacomo
Session: Poster Display session 3
Resources:
Abstract
2214 - Enzalutamide (ENZA) and Apalutamide (APA) In vitro chemical reactivity studies and Activity in a Mouse Drug Allergy Model (MDAM)
Presenter: Mausumee Guha
Session: Poster Display session 3
Resources:
Abstract
5044 - Influence of genetic variation in COMT on cisplatin-induced nephrotoxicity in cancer patients.
Presenter: Bram Agema
Session: Poster Display session 3
Resources:
Abstract
3293 - Cardioprotective and anti-inflammatory effects of Empagliflozin during treatment with Doxorubicin: a cellular and preclinical study
Presenter: Vincenzo Quagliariello
Session: Poster Display session 3
Resources:
Abstract
3324 - Breast Cancer Organoids Model Treatment Response of HER2 Targeted Therapy in HER2-mutant Breast Cancer
Presenter: Xuelu Li
Session: Poster Display session 3
Resources:
Abstract