Functional Magnetic Resonance Imaging Networks Induced by Intracranial Stimulation May Help Defining the Epileptogenic Zone. Jones, S. E., Zhang, M., Avitsian, R., Bhattacharyya, P., Bulacio, J., Cendes, F., Enatsu, R., Lowe, M. J., Najm, I., Nair, D., Phillips, M. D., & Gonzalez-Martinez, J. Brain Connectivity, 4(4):286-298, 2014.
Functional Magnetic Resonance Imaging Networks Induced by Intracranial Stimulation May Help Defining the Epileptogenic Zone. [link]Link  Functional Magnetic Resonance Imaging Networks Induced by Intracranial Stimulation May Help Defining the Epileptogenic Zone. [link]Paper  bibtex   
@article{journals/brain/JonesZABBCELNNPG14,
  author = {Jones, Stephen E. and Zhang, Myron and Avitsian, Rafi and Bhattacharyya, Pallab and Bulacio, Juan and Cendes, Fernando and Enatsu, Rei and Lowe, Mark J. and Najm, Imad and Nair, Dileep and Phillips, Michael D. and Gonzalez-Martinez, Jorge},
  ee = {http://dx.doi.org/10.1089/brain.2014.0225},
  interhash = {f58dc083d6eff08815f071800cf3248e},
  intrahash = {94ae203267ac3f6c6b6966988ad6c156},
  journal = {Brain Connectivity},
  number = 4,
  pages = {286-298},
  title = {Functional Magnetic Resonance Imaging Networks Induced by Intracranial Stimulation May Help Defining the Epileptogenic Zone.},
  url = {http://dblp.uni-trier.de/db/journals/brain/brain4.html#JonesZABBCELNNPG14},
  volume = 4,
  year = 2014
}

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