Build patient-specific 3D tissue models from DICOM images and simulate electric field and temperature distributions for different electrode placements and parameters. Compare results across research conditions and generate quantitative reports for publications and scientific presentations.
Study electric fields and temperature distributions caused by Joule heating in a single environment for preclinical and translational research and biomedical engineering education.
For research and education only. Not a medical device.
Build and refine 3D tissue models with automatic segmentation and manual editing tools.
Create patient-specific 3D volume models that reflect individual anatomy.
Perform coupled multiphysics simulations to analyse electric field intensity and temperature changes.
Calculate electric field intensity, current density and temperature changes for tumour targets and other volumes or regions of interest (VOI/ROI).
Compare simulation results side by side across electrode layouts and applied settings to identify configurations suited to your research.
Export analysis data and 3D visualisations in standard formats for publications and research reports.
Simulate different electric field parameters, compare results and organise findings for preclinical and translational research.
Help students in biomedical engineering and radiation oncology explore electric field and thermal simulations through hands-on learning.
Explore how electrode array geometry and electrical drive settings affect simulation results before building hardware prototypes.
Each workstation receives a trial licence with full access to the software. Our team can also advise on academic licensing for your research needs.