Realistic head modeling of electromagnetic brain activity: An integrated Brainstorm pipeline from MRI data to the FEM solution

11/02/2020
by   Takfarinas Medani, et al.
0

Human brain activity generates scalp potentials (electroencephalography EEG), intracranial potentials (iEEG), and external magnetic fields (magnetoencephalography MEG), all capable of being recorded, often simultaneously, for use in research and clinical applications. The so-called forward problem is the modeling of these fields at their sensors for a given putative neural source configuration. While early generations modeled the head as a simple set of isotropic spheres, today s ubiquitous magnetic resonance imaging (MRI) data allows detailed descriptions of head compartments with assigned isotropic and anisotropic conductivities. In this paper, we present a complete pipeline, integrated into the Brainstorm software, that allows users to generate an individual and accurate head model from the MRI and then calculate the electromagnetic forward solution using the finite element method (FEM). The head model generation is performed by the integration of the latest tools for MRI segmentation and FEM mesh generation. The final head model is divided into five main compartments: white matter, grey matter, CSF, skull, and scalp. For the isotropic compartments, widely-used default conductivity values are assigned. For the brain tissues, we use the process of the effective medium approach (EMA) to estimate anisotropic conductivity tensors from diffusion-weighted imaging (DWI) data. The FEM electromagnetic calculations are performed by the DUNEuro library, integrated into Brainstorm and accessible with a user-friendly graphical interface. This integrated pipeline, with full tutorials and example data sets freely available on the Brainstorm website, gives the neuroscience community easy access to advanced tools for electromagnetic modeling using FEM.

READ FULL TEXT

page 2

page 3

research
03/18/2022

Highly Adaptive and Automated Tetrahedral Mesh Generator for Multi-Compartment Human Head Model with Deep Brain Structures in EEG

This paper introduces a highly adaptive and automated approach for gener...
research
10/06/2019

Non-Uniform Conductivity Estimation for Personalized Brain Stimulation using Deep Learning

Electromagnetic stimulation of the human brain is a key tool for the neu...
research
05/16/2022

An automatic pipeline for atlas-based fetal and neonatal brain segmentation and analysis

The automatic segmentation of perinatal brain structures in magnetic res...
research
01/09/2019

duneuro - A software toolbox for forward modeling in neuroscience

This paper describes duneuro, a software toolbox for forward modeling in...
research
04/21/2019

Web Based Brain Volume Calculation for Magnetic Resonance Images

Brain volume calculations are crucial in modern medical research, especi...
research
11/19/2018

Zeffiro user interface for electromagnetic brain imaging: a GPU accelerated FEM tool for forward and inverse computations in Matlab

This article introduces the Zeffiro interface (ZI) version 2.2 for brain...
research
02/26/2023

Implementation of an aeroacoustic simulation pipeline using openCFS-Acoustics and openCFS-Data applied to human phonation

The human phonation process be modeled using the Finite Element Method (...

Please sign up or login with your details

Forgot password? Click here to reset