Literature DB >> 15250631

Quantitative evaluation of image-based distortion correction in diffusion tensor imaging.

Thomas Netsch1, Arianne van Muiswinkel.   

Abstract

A statistical method for the evaluation of image registration for a series of images based on the assessment of consistency properties of the registration results is proposed. Consistency is defined as the residual error of the composition of cyclic registrations. By combining the transformations of different algorithms the consistency error allows a quantitative comparison without the use of ground truth, specifically, it allows a determination as to whether the algorithms are compatible and hence provide comparable registrations. Consistency testing is applied to evaluate retrospective correction of eddy current-induced image distortion in diffusion tensor imaging of the brain. In the literature several image transformations and similarity measures have been proposed, generally showing a significant reduction of distortion in side-by-side comparison of parametric maps before and after registration. Transformations derived from imaging physics and a three-dimensional affine transformation as well as mutual information (MI) and local correlation (LC) similarity are compared to each other by means of consistency testing. The dedicated transformations could not demonstrate a significant difference for more than half of the series considered. LC similarity is well-suited for distortion correction providing more consistent registrations which are comparable to MI.

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Year:  2004        PMID: 15250631     DOI: 10.1109/TMI.2004.827479

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


  44 in total

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6.  Retrospective distortion correction for 3D MR diffusion tensor microscopy using mutual information and Fourier deformations.

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7.  Reconstruction of scattered data in fetal diffusion MRI.

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Journal:  Med Image Comput Comput Assist Interv       Date:  2010

8.  Preliminary experience with visualization of intracortical fibers by focused high-resolution diffusion tensor imaging.

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10.  Quantitative diffusion tensor imaging and intellectual outcomes in spina bifida: laboratory investigation.

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