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Health Physics|March 24, 2021
Nonuniform Exposure to the Cornea from Millimeter WavesKenneth R Foster, Ilkka Laakso, Steven ChalfinPhysics in Medicine and Biology|February 7, 2017
Time constants for temperature elevation in human models exposed to dipole antennas and beams in the frequency range from 1 to 30 GHzRyota Morimoto, Akimasa Hirata, Ilkka Laakso, et al.Health Physics|June 26, 2003
Thermal modeling of millimeter wave damage to the primate cornea at 35 GHz and 94 GHzKenneth R Foster, John A D'Andrea, Steven Chalfin, et al.Physics in Medicine and Biology|February 9, 2017
On the averaging area for incident power density for human exposure limits at frequencies over 6 GHzYota Hashimoto, Akimasa Hirata, Ryota Morimoto, et al.Physics in Medicine and Biology|May 14, 2009
Assessment of the computational uncertainty of temperature rise and SAR in the eyes and brain under far-field exposure from 1 to 10 GHzIlkka LaaksoPhysics in Medicine and Biology|March 24, 2021
Human exposure to radiofrequency energy above 6 GHz: review of computational dosimetry studiesAkimasa Hirata, Sachiko Kodera, Kensuke Sasaki, et al.Physics in Medicine and Biology|October 13, 2022
Estimation method for the anisotropic electrical conductivity of<i>in vivo</i>human muscles and fat between 10 kHz and 1 MHzOtto Kangasmaa, Ilkka LaaksoJournal of Neural Engineering|July 2, 2013
Computational analysis shows why transcranial alternating current stimulation induces retinal phosphenesIlkka Laakso, Akimasa HirataPhysics in Medicine and Biology|November 7, 2012
Fast multigrid-based computation of the induced electric field for transcranial magnetic stimulationIlkka Laakso, Akimasa HirataPhysics in Medicine and Biology|December 29, 2021
Magneto- and electrophosphene thresholds in the retina: a dosimetry modeling studyJanita Nissi, Ilkka LaaksoPageof 14