Researcher Portfolio
Alaimo, Samantha MC
Department Human Perception, Cognition and Action, Max Planck Institute for Biological Cybernetics, Max Planck Society, Max Planck Institute for Biological Cybernetics, Max Planck Society
Researcher Profile
Position: Max Planck Institute for Biological Cybernetics, Max Planck Society
Position: Department Human Perception, Cognition and Action, Max Planck Institute for Biological Cybernetics, Max Planck Society
Additional IDs: MPIKYB: alaimo
Researcher ID: https://pure.mpg.de/cone/persons/resource/persons83778
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Publications
: Bungert, A., Antunes, A., Espenhahn, S., & Thielscher, A. (2017). Where does TMS Stimulate the Motor Cortex? Combining Electrophysiological Measurements and Realistic Field Estimates to Reveal the Affected Cortex Position. Cerebral Cortex, 27(11), 5083-5094. doi:10.1093/cercor/bhw292. [PubMan] : Thielscher, A., Antunes, A., Bungert, A., Espenhahn, S., Hamada, M., Sørensen, P., Rothwell, J., & Siebner, H. (2017). Linking electric field simulations and physiological measurements to reveal how TMS stimulates the human motor hand area. In 47th Annual Meeting of the Society for Neuroscience (Neuroscience 2017). [PubMan] : Minjoli, S., Saturnino, G., Blicher, J., Stagg, C., Siebner, H., Antunes, A., & Thielscher, A. (2017). The impact of large structural brain changes in chronic stroke patients on the electric field caused by transcranial brain stimulation. NeuroImage: Clinical, 15, 106-117. doi:10.1016/j.nicl.2017.04.014. [PubMan] : Mian, O., Li, Y., Antunes, A., Glover, P., & Day, B. (2016). Effect of head pitch and roll orientations on magnetically induced vertigo. Journal of Physiology, 594(4), 1051-1067. doi:10.1113/JP271513. [PubMan] : Saturnino, G., Antunes, A., & Thielscher, A. (2015). On the importance of electrode parameters for shaping electric field patterns generated by tDCS. NeuroImage, 120, 25-35. doi:10.1016/j.neuroimage.2015.06.067. [PubMan] : Thielscher, A., Antunes, A., & Saturnino, G. (2015). Field modeling for transcranial magnetic stimulation: A useful tool to understand the physiological effects of TMS? In 37th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC 2015) (pp. 222-225). Piscataway, NJ, USA: IEEE. [PubMan] : Saturnino, G., Antunes, A., Stelzer, J., & Thielscher, A. (2015). SimNIBS: A versatile toolbox for simulating fields generated by transcranial brain stimulation. Poster presented at 21st Annual Meeting of the Organization for Human Brain Mapping (OHBM 2015), Honolulu, HI, USA. [PubMan] : Opitz, A., Paulus, W., Will, S., Antunes, A., & Thielscher, A. (2015). Determinants of the electric field during transcranial direct current stimulation. NeuroImage, 109, 140-150. doi:10.1016/j.neuroimage.2015.01.033. [PubMan] : Bungert, A., Antunes, A., & Thielscher, A. (2014). Electric field calculations explain physiological responses to TMS during motor cortex stimulation. Poster presented at 20th Annual Meeting of the Organization for Human Brain Mapping (OHBM 2014), Hamburg, Germany. [PubMan] : Mandija, S., van Lier, A., Thielscher, A., Antunes, A., Neggers, S., Luijten, P., & van den Berg, C. (2014). Characterizing Electrical Interactions of Tissue with Time-Varying Gradient Fields: Simulations and Measurements. Poster presented at Joint Annual Meeting ISMRM-ESMRMB 2014, Milano, Italy. [PubMan]