|
Volumn 26, Issue 2, 2005, Pages
|
Maxwell-Wagner relaxation in electrical imaging
|
Author keywords
Bioimpedance; Contactless measurement; Electric field tomography; Electrical impedance imaging
|
Indexed keywords
ELECTRIC IMPEDANCE;
ELECTRIC IMPEDANCE MEASUREMENT;
ELECTRIC IMPEDANCE TOMOGRAPHY;
ELECTRODES;
FINITE ELEMENT METHOD;
MEDICAL APPLICATIONS;
BIO-IMPEDANCE;
CONDUCTIVE MEDIA;
CONTACTLESS MEASUREMENT;
ELECTRIC FIELD TOMOGRAPHY;
ELECTRICAL IMAGING;
ELECTRICAL IMPEDANCE IMAGING;
HIGH FREQUENCY ELECTRIC FIELDS;
HIGH FREQUENCY HF;
MAXWELL-WAGNER RELAXATION;
TOMOGRAPHY METHODS;
ELECTRIC FIELDS;
CONDUCTANCE;
CONFERENCE PAPER;
ELECTRIC FIELD;
ELECTRODE;
FEASIBILITY STUDY;
FINITE ELEMENT ANALYSIS;
IMAGING;
MAXWELL WAGNER RELAXATION;
MEASUREMENT;
PRIORITY JOURNAL;
SIMULATION;
TECHNIQUE;
ALGORITHM;
ANIMAL;
ARTICLE;
BIOLOGICAL MODEL;
BODY COMPOSITION;
COMPUTER ASSISTED DIAGNOSIS;
COMPUTER SIMULATION;
ELECTROMAGNETIC FIELD;
EVALUATION;
HUMAN;
IMPEDANCE;
IMPEDANCE PLETHYSMOGRAPHY;
METHODOLOGY;
PHYSIOLOGY;
TOMOGRAPHY;
DIAGNOSTIC AGENT;
ALGORITHMS;
ANIMALS;
BODY COMPOSITION;
COMPUTER SIMULATION;
ELECTRIC IMPEDANCE;
ELECTRODES;
ELECTROMAGNETIC FIELDS;
HUMANS;
IMAGE INTERPRETATION, COMPUTER-ASSISTED;
MODELS, BIOLOGICAL;
PLETHYSMOGRAPHY, IMPEDANCE;
TOMOGRAPHY;
|
EID: 23044482336
PISSN: 09673334
EISSN: 09673334
Source Type: Journal
DOI: 10.1088/0967-3334/26/2/010 Document Type: Conference Paper |
Times cited : (13)
|
References (6)
|