Neurophet tES Lab 2.0 is a complete, powerful transcranial electrical stimulation computational modelling and simulation software that allows users to calculate and visualise brain stimulation effects based on individual brain structure and stimulus conditions.
Neurophet tES Lab
Ultra-fast Brain Segmentation
The sophisticated AI engine behind Neurophet tES Lab 2.0 is capable of carrying out fully-automated, ultra-fast brain segmentation of a subject's individual magnetic resonance imaging (MRI) data, significantly shortening the time required to carry out a process that can take multiple hours with other methods. With Neurophet tES Lab, users are able to quickly simulate all tissues that separate tES electrodes from the brain, such as skin, skull, CSF, white matter, and grey matter.
Based on this MRI data segmentation, the advanced built-in brain modelling engine is then capable of creating a fully-personalised, 3D individual brain model that can be used to simulate current flow, which can increase accuracy in positioning electrodes and potentially lead to less variable, more reproducible tES effects.
Computational Modelling Without MRI Data
For researchers working without MRI data, the Neurophet software also includes a wide variety of human templates, from stock MRI data to fully-rendered 3D models for a rich and fast, easily accessible research environment.
User-friendly Controls
Neurophet tES Lab 2.0’s intuitive interface can calculate the best configuration of electrodes to apply focal stimulation to a desired target, in addition to simulating current flow from user-defined montages (including 10-20 co-ordinate positioning).