Computational Modelling — Enhancing pancreatic cancer ablation efficiency: bipolar IRE with conductive MOF

Measurement evidence

Computational Modelling

Enhancing pancreatic cancer ablation efficiency: bipolar IRE with conductive MOF · Xu L., Lou W., Xu F. et al. · Materials Chemistry Frontiers · 2025 · 2018-2030

1 measurement group · 1 results

Reported values remain attached to the sample, method, conditions, extraction quality and source location that produced them.

COMSOL Multiphysics simulation

Bipolar IRE electrode computational model · Model

Electric-field, temperature, and ablation volume for bipolar electrode at varied electric field strengths.

Geometry
Bipolar electrode immersed in simulated cubic tissue model; unstructured tetrahedral mesh.
Context
Device model, no MOF synthesis.
Measurement source
2019 · 2.2 Design and simulation of bipolar electrodes · Fig. 1; Fig. S2-S5
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Bipolar electrode simulated temperature at 3000 V cm^-1below 45 Cupper boundText
Approximate
2022 · 3.1 Design and simulation experiments · Fig. 1g-i; Fig. S4