Effect of Electrical Conductivity Uncertainty in the Assessment of the Electric Fields Induced in the Brain by Exposure to Uniform Magnetic Fields at 50 Hz
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[1] Solomon R. Eisenberg,et al. A three-dimensional finite element method for computing magnetically induced currents in tissues , 1994 .
[2] P. Dimbylow,et al. Development of pregnant female, hybrid voxel-mathematical models and their application to the dosimetry of applied magnetic and electric fields at 50 Hz , 2006, Physics in medicine and biology.
[3] C. Schroeder,et al. Limitations of ex vivo measurements for in vivo neuroscience , 2017, Proceedings of the National Academy of Sciences.
[4] P. Dimbylow. Development of the female voxel phantom, NAOMI, and its application to calculations of induced current densities and electric fields from applied low frequency magnetic and electric fields , 2005, Physics in medicine and biology.
[5] Ricardo Salvador,et al. The electric field distribution in the brain during TTFields therapy and its dependence on tissue dielectric properties and anatomy: a computational study , 2015, Physics in medicine and biology.
[6] R Salvador,et al. Tissue heterogeneity as a mechanism for localized neural stimulation by applied electric fields , 2007, Physics in medicine and biology.
[7] P. Å. Öberg,et al. Magneto- and electrophosphenes: A comparative study , 1980, Medical and Biological Engineering and Computing.
[8] I. Laakso,et al. Computational errors of the induced electric field in voxelized and tetrahedral anatomical head models exposed to spatially uniform and localized magnetic fields , 2019, Physics in medicine and biology.
[9] David R. Wozny,et al. The electrical conductivity of human cerebrospinal fluid at body temperature , 1997, IEEE Transactions on Biomedical Engineering.
[10] C Gabriel,et al. Changes in the dielectric properties of rat tissue as a function of age at microwave frequencies. , 2001, Physics in medicine and biology.
[11] Satoshi Tanaka,et al. Inter-subject Variability in Electric Fields of Motor Cortical tDCS , 2015, Brain Stimulation.
[12] Gernot Schmid,et al. On the importance of body posture and skin modelling with respect to in situ electric field strengths in magnetic field exposure scenarios. , 2016, Physics in medicine and biology.
[13] Akimasa Hirata,et al. Low-frequency electrical dosimetry: research agenda of the IEEE International Committee on Electromagnetic Safety. , 2016, Physics in medicine and biology.
[14] Mark Hallett,et al. The electric field induced in the brain by magnetic stimulation: a 3-D finite-element analysis of the effect of tissue heterogeneity and anisotropy , 2003, IEEE Transactions on Biomedical Engineering.
[15] V. Walsh,et al. Diffusion tensor MRI-based estimation of the influence of brain tissue anisotropy on the effects of transcranial magnetic stimulation , 2007, NeuroImage.
[16] N. Kuster,et al. Analysis of human brain exposure to low‐frequency magnetic fields: A numerical assessment of spatially averaged electric fields and exposure limits , 2013, Bioelectromagnetics.
[17] J. B. Ranck,et al. THE SPECIFIC IMPEDANCE OF THE DORSAL COLUMNS OF CAT: AN INISOTROPIC MEDIUM. , 1965, Experimental neurology.
[18] A. Dale,et al. High‐resolution intersubject averaging and a coordinate system for the cortical surface , 1999, Human brain mapping.
[19] K. Jokela,et al. ICNIRP Guidelines GUIDELINES FOR LIMITING EXPOSURE TO TIME-VARYING , 1998 .
[20] E. Neufeld,et al. Children and adults exposed to low-frequency magnetic fields at the ICNIRP reference levels: theoretical assessment of the induced electric fields , 2012, Physics in medicine and biology.
[21] R. W. Lau,et al. The dielectric properties of biological tissues: III. Parametric models for the dielectric spectrum of tissues. , 1996, Physics in medicine and biology.
[22] P. Å. Öberg,et al. Magnetophosphenes: a quantitative analysis of thresholds , 1980, Medical and Biological Engineering and Computing.
[23] J. Latikka,et al. Conductivity of living intracranial tissues. , 2001, Physics in medicine and biology.
[24] C. Gabriel. Dielectric properties of biological tissue: Variation with age , 2005, Bioelectromagnetics.
[25] M A Stuchly,et al. A comparison of 60 Hz uniform magnetic and electric induction in the human body. , 1997, Physics in medicine and biology.
[26] P. Nicholson,et al. Specific impedance of cerebral white matter. , 1965, Experimental neurology.
[27] Yoichi Sekiba,et al. Intercomparison of In Situ Electric Fields in Human Models Exposed to Spatially Uniform Magnetic Fields , 2018, IEEE Access.
[28] Akimasa Hirata,et al. Dosimetry in models of child and adult for low-frequency electric field , 2001, IEEE Transactions on Biomedical Engineering.
[29] Akimasa Hirata,et al. An electric field induced in the retina and brain at threshold magnetic flux density causing magnetophosphenes , 2011, Physics in medicine and biology.
[30] Kristoffer Hougaard Madsen,et al. A principled approach to conductivity uncertainty analysis in electric field calculations , 2019, NeuroImage.
[31] J. Patrick Reilly,et al. Applied Bioelectricity: From Electrical Stimulation to Electropathology , 1998 .
[32] P. Basser,et al. Predicting the electric field distribution in the brain for the treatment of glioblastoma , 2014, Physics in medicine and biology.
[33] W. Sutherling,et al. Conductivities of Three-Layer Live Human Skull , 2004, Brain Topography.
[34] E. Grant,et al. Variation with age of the dielectric properties of mouse brain cerebrum , 1984, Physics in medicine and biology.
[35] In-situ electric field and current density in Japanese male and female models for uniform magnetic field exposures. , 2009, Radiation protection dosimetry.
[36] C. Gabriel. Compilation of the Dielectric Properties of Body Tissues at RF and Microwave Frequencies. , 1996 .
[37] C. Gabriel,et al. Electrical conductivity of tissue at frequencies below 1 MHz , 2009, Physics in medicine and biology.
[38] I. Laakso,et al. Inter-individual variations in electric fields induced in the brain by exposure to uniform magnetic fields at 50 Hz , 2020, Physics in medicine and biology.
[39] Anders M. Dale,et al. Cortical Surface-Based Analysis I. Segmentation and Surface Reconstruction , 1999, NeuroImage.
[40] R. W. Lau,et al. The dielectric properties of biological tissues: II. Measurements in the frequency range 10 Hz to 20 GHz. , 1996, Physics in medicine and biology.
[41] Giampaolo Pisano,et al. Variation in Reported Human Head Tissue Electrical Conductivity Values , 2019, Brain Topography.
[42] G. Genin,et al. Measurements of mechanical anisotropy in brain tissue and implications for transversely isotropic material models of white matter. , 2013, Journal of the mechanical behavior of biomedical materials.
[43] Essam A. Rashed,et al. Spatial Averaging Schemes of In Situ Electric Field for Low-Frequency Magnetic Field Exposures , 2019, IEEE Access.
[44] C Gabriel,et al. The dielectric properties of biological tissues: I. Literature survey. , 1996, Physics in medicine and biology.
[45] Akimasa Hirata,et al. Fast multigrid-based computation of the induced electric field for transcranial magnetic stimulation , 2012, Physics in medicine and biology.