Influence of tissue conductivity anisotropy on EEG/MEG field and return current computation in a realistic head model: A simulation and visualization study using high-resolution finite element modeling

Carsten H. Wolters, Alfred Anwander, Xavier Tricoche, David M. Weinstein, M. A. Koch, Robert S. MacLeod. Influence of tissue conductivity anisotropy on EEG/MEG field and return current computation in a realistic head model: A simulation and visualization study using high-resolution finite element modeling. NeuroImage, 30(3):813-826, 2006. [doi]

@article{WoltersATWKM06,
  title = {Influence of tissue conductivity anisotropy on EEG/MEG field and return current computation in a realistic head model: A simulation and visualization study using high-resolution finite element modeling},
  author = {Carsten H. Wolters and Alfred Anwander and Xavier Tricoche and David M. Weinstein and M. A. Koch and Robert S. MacLeod},
  year = {2006},
  url = {https://www.wikidata.org/entity/Q28287706},
  researchr = {https://researchr.org/publication/WoltersATWKM06},
  cites = {0},
  citedby = {0},
  journal = {NeuroImage},
  volume = {30},
  number = {3},
  pages = {813-826},
}