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Modeling Intracochlear Magnetic Stimulation: A Finite-Element Analysis
S. Mukesh
, D. T. Blake
, B. J. McKinnon
, P. T. Bhatti
Research output
:
Contribution to journal
›
Article
›
peer-review
12
Scopus citations
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Keyphrases
Intracochlear
100%
Inductors
100%
Induced Electric Field
100%
Magnetic Stimulation
100%
Finite Element Analysis
100%
Neural Element
66%
Cochlea
33%
In Vivo Analysis
33%
Pulsatile
33%
Computation Time
33%
Peak Current
33%
Transmembrane Potential
33%
Cylindrical Structure
33%
Auditory Brainstem Response
33%
Cochlear Implantation
33%
Neurostimulation
33%
Feline Model
33%
Submillimeter
33%
Electrode Array
33%
Current Stimulation
33%
Scala Tympani
33%
Inductor Coil
33%
Single-inductor
33%
Microinductor
33%
Micro-magnetic Stimulation
33%
Finite Element Simulation
33%
Magnetically Induced
33%
Axial Symmetry
33%
Coil Orientation
33%
Excitation Parameters
33%
Perilymph
33%
Medicine and Dentistry
Finite Element Analysis
100%
Magnetic Stimulation
100%
Bone Tissue
33%
Cochlea
33%
Brain Stem Response
33%
Cochlear Implantation
33%
Membrane Potential
33%
Perilymph
33%
Scala Tympani
33%
Engineering
Induced Electric Field
100%
Finite Element Analysis
100%
Feasibility Study
33%
Modeling Study
33%
Computation Time
33%
Electrode Array
33%
Finite Element Simulation
33%
Cylindrical Structure
33%
Micromagnetics
33%
Material Science
Finite Element Method
100%