Literature DB >> 20051330

In vivo impedance imaging with total variation regularization.

Andrea Borsic1, Brad M Graham, Andy Adler, William R B Lionheart.   

Abstract

We show that electrical impedance tomography (EIT) image reconstruction algorithms with regularization based on the total variation (TV) functional are suitable for in vivo imaging of physiological data. This reconstruction approach helps to preserve discontinuities in reconstructed profiles, such as step changes in electrical properties at interorgan boundaries, which are typically smoothed by traditional reconstruction algorithms. The use of the TV functional for regularization leads to the minimization of a nondifferentiable objective function in the inverse formulation. This cannot be efficiently solved with traditional optimization techniques such as the Newton method. We explore two implementations methods for regularization with the TV functional: the lagged diffusivity method and the primal dual-interior point method (PD-IPM). First we clarify the implementation details of these algorithms for EIT reconstruction. Next, we analyze the performance of these algorithms on noisy simulated data. Finally, we show reconstructed EIT images of in vivo data for ventilation and gastric emptying studies. In comparison to traditional quadratic regularization, TV regularization shows improved ability to reconstruct sharp contrasts.

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Year:  2010        PMID: 20051330     DOI: 10.1109/TMI.2009.2022540

Source DB:  PubMed          Journal:  IEEE Trans Med Imaging        ISSN: 0278-0062            Impact factor:   10.048


  22 in total

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8.  Graph Convolutional Networks for Model-Based Learning in Nonlinear Inverse Problems.

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9.  Ventilation inhomogeneity in obstructive lung diseases measured by electrical impedance tomography: a simulation study.

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