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Journal ArticleDOI

Effect of skin impedance on image quality and variability in electrical impedance tomography: a model study

K G Boone, +1 more
- 01 Sep 1996 - 
- Vol. 34, Iss: 5, pp 351-353
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TLDR
It is concluded that the patient's skin should be abraded to reduce impedance, and measurements should be avoided in the first 10 min after electrode placement, to allow satisfactory images.
Abstract
A computer simulation is used to investigate the relationship between skin impedance and image artefacts in electrical impedance tomography. Sets of electrode impedance are generated with a pseudo-random distribution and used to introduce errors in boundary voltage measurements. To simplify the analysis, the non-idealities in the current injection circuit are replaced by a fixed common-mode error term. The boundary voltages are reconstructed into images and inspected. Where the simulated skin impedance remains constant between measurements, large impedances (> 2k omega) do not cause significant degradation of the image. Where the skin impedances 'drift' between measurements, a drift of 5% from a starting impedance of 100 omega is sufficient to cause significant image distortion. If the skin impedances vary randomly between measurements, they have to be less than 10 omega to allow satisfactory images. Skin impedances are typically 100-200 omega at 50 kHz on unprepared skin. These values are sufficient to cause image distortion if they drift over time. It is concluded that the patient's skin should be abraded to reduce impedance, and measurements should be avoided in the first 10 min after electrode placement.

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Citations
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Density-tapered spiral arrays for ultrasound 3-D imaging

TL;DR: A method to design the layout of large circular arrays with a limited number of elements according to Fermat's spiral seeds and spatial density modulation is proposed and shown to be suitable for application to 3-D ultrasound imaging.
Proceedings ArticleDOI

Experimental ultrasound system for real-time synthetic imaging

TL;DR: A real-time system that will be capable of performing the processing for the currently available imaging methods, and will make it possible to perform initial trials in a clinical environment with new imaging modalities for synthetic aperture imaging, 2D and 3D B-mode and velocity imaging.
Journal ArticleDOI

Compensation of errors due to discretization, domain truncation and unknown contact impedances in electrical impedance tomography

TL;DR: In this article, a Bayesian approach to the treatment of approximation and modelling errors for inverse problems has been proposed, and it has been shown that the errors due to the unknown contact impedances can also be compensated for by employing the approximation error approach.
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Model Fitting Using RANSAC for Surgical Tool Localization in 3-D Ultrasound Images

TL;DR: This work presents a method to localize a thin surgical tool such as a biopsy needle or a microelectrode in a 3-D ultrasound image using thresholding and model fitting using random sample consensus for robust localization of the axis.
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Lesion detectability in diagnostic ultrasound with short-lag spatial coherence imaging.

TL;DR: Simulations using Field II are used to demonstrate the detection of lesions of varying sizes and contrasts with and without acoustical clutter in the backscattered data, and short-lag spatial coherence imaging is applied to in vivo imaging of the carotid sheath and demonstrates significant gains in CNR as well as visualization of arterioles in theCarotid Sheath.
References
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Journal ArticleDOI

The Sheffield data collection system.

TL;DR: Any improvement in spatial resolution can only be made at the expense of speed and sensitivity which may well be the more important factors in determining the clinical utility of APT.
Journal ArticleDOI

Using compound electrodes in electrical impedance tomography

TL;DR: A sensitivity study showed that the reconstructed resistivity distributions are less dependent on the unknown contact resistance values for a compound electrode than a conventional electrode and that the use of a compound electrodes results in improved images for the reconstruction algorithm.
Journal ArticleDOI

Finite element method and reconstruction algorithms in electrical impedance tomography

TL;DR: To validate the method of data analysis, a theoretical model was developed, with the limiting case being the turn-on transient for a membrane covered spherical cathode, and the results agree with previously published data.

Assessment of noise and drift artefacts in electrical impedance tomography measurements using the sheffield Mark I system

K. G. Boone, +1 more
TL;DR: In this article, the mesures peuvent etre affectees d'artefacts dus au bruit et aux derives are discussed, e.g., les variations de l'impedance du fluide and celles des impedances d'electrode sont peu importantes.
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