Objective: Multi-Frequency Symmetry Difference Electrical Impedance Tomography (MFSD-EIT) can robustly detect and identify unilateral perturbations in symmetric scenes. Here, an investigation is performed to assess if the algorithm can be successfully applied to identify the aetiology of stroke with the aid of machine learning. Methods: Anatomically realistic four-layer Finite Element Method models of the head based on stroke patient images are developed and used to generate EIT data over a 5 Hz – 100 Hz frequency range with and without bleed and clot lesions present. Reconstruction generates conductivity maps of each head at each frequency. Application of a quantitative metric assessing changes in symmetry across the sagittal plane of the ...
Multifrequency Electrical Impedance Tomography (MFEIT) is an emerging imaging modality which exploit...
We consider the problem of the detection of brain hemorrhages from three-dimensional (3D) electrical...
Brain haemorrhages often require urgent treatment with a consequent need for quick and accurate diag...
Objective: A novel method for the imaging of static scenes using Electrical Impedance Tomography (EI...
Objective: Bi-Frequency Symmetry Difference (BFSD)-EIT can detect, localize and identify unilateral ...
Stroke has a high mortality and disability rate and should be rapidly diagnosed to improve prognosis...
Objective: The theoretical basis, experimental implementation, and proof of concept of a novel elect...
Copyright © 2014 Jieshi Ma et al.This is an open access article distributed under the Creative Commo...
Electrical impedance tomography (EIT) is an emerging non-invasive medical imaging modality. It is ba...
The differentiation of haemorrhagic from ischaemic stroke using electrical impedance tomography (EIT...
Objective: The theoretical basis, experimental implementation, and proof of concept of a novel elect...
MFEIT (multi-frequency electrical impedance tomography) could distinguish between ischaemic and haem...
Tissues have characteristic frequency dependent impendence to electrical current. This property is e...
A brain haemorrhage constitutes a serious medical scenario with a need for rapid, accurate detection...
BFSD-EIT can detect deviations in the inherent normal symmetry of the head due to, for example, the ...
Multifrequency Electrical Impedance Tomography (MFEIT) is an emerging imaging modality which exploit...
We consider the problem of the detection of brain hemorrhages from three-dimensional (3D) electrical...
Brain haemorrhages often require urgent treatment with a consequent need for quick and accurate diag...
Objective: A novel method for the imaging of static scenes using Electrical Impedance Tomography (EI...
Objective: Bi-Frequency Symmetry Difference (BFSD)-EIT can detect, localize and identify unilateral ...
Stroke has a high mortality and disability rate and should be rapidly diagnosed to improve prognosis...
Objective: The theoretical basis, experimental implementation, and proof of concept of a novel elect...
Copyright © 2014 Jieshi Ma et al.This is an open access article distributed under the Creative Commo...
Electrical impedance tomography (EIT) is an emerging non-invasive medical imaging modality. It is ba...
The differentiation of haemorrhagic from ischaemic stroke using electrical impedance tomography (EIT...
Objective: The theoretical basis, experimental implementation, and proof of concept of a novel elect...
MFEIT (multi-frequency electrical impedance tomography) could distinguish between ischaemic and haem...
Tissues have characteristic frequency dependent impendence to electrical current. This property is e...
A brain haemorrhage constitutes a serious medical scenario with a need for rapid, accurate detection...
BFSD-EIT can detect deviations in the inherent normal symmetry of the head due to, for example, the ...
Multifrequency Electrical Impedance Tomography (MFEIT) is an emerging imaging modality which exploit...
We consider the problem of the detection of brain hemorrhages from three-dimensional (3D) electrical...
Brain haemorrhages often require urgent treatment with a consequent need for quick and accurate diag...