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Implanted Dynamic Electric Field Therapy for Glioblastoma: Preclinical Safety and Efficacy of Intratumoral Modulation Therapy
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DOI:10.1093/noajnl/vdag160.png)
Abstract
En 中文
Electric field-based approaches show therapeutic impact against glioblastoma, with 1–3 V/cm often cited as the range of threshold intensities for antitumor effects. However, the field amplitudes required for maximal impact, and strategies needed to achieve them in the brain remain poorly defined. This study aimed to evaluate the safety, electrical integrity, field distribution, and efficacy of a novel implanted Intratumoral Modulation Therapy (IMT) delivering spatiotemporally dynamic electric fields in an aggressive in vivo glioblastoma model.
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