Maximization of mutual information of voxel intensities has been demonstrated to be a very powerful criterion for three-dimensional medical image registration, allowing robust and accurate fully automated affine registration of multimodal images in a variety of applications, without the need for seg
First-pass myocardial perfusion image registration by maximization of normalized mutual information
✍ Scribed by Kelvin K. Wong; Edward S. Yang; Ed X. Wu; Hung-Fat Tse; Stephen T. Wong
- Book ID
- 102907053
- Publisher
- John Wiley and Sons
- Year
- 2008
- Tongue
- English
- Weight
- 661 KB
- Volume
- 27
- Category
- Article
- ISSN
- 1053-1807
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✦ Synopsis
Abstract
Purpose
To evaluate a left ventricular image registration algorithm for first‐pass MR myocardial perfusion.
Materials and Methods
A normalized mutual information based motion correction algorithm was proposed and tested on 27 adenosine stressed myocardial perfusion cases consisting of pretreatment and posttreatment of 15 patients undergone autologous bone marrow mononuclear cell transplant therapy. An image mask approximately covering the left and right ventricles was manually defined to include a region of interest for registration. A two‐dimensional multiresolution registration approach was used to register consecutively acquired multislice images with in‐plane translations. The method was validated by manual registration and singular value deconvolution based perfusion analysis.
Results
The proposed image registration algorithm was found to be robust in minimizing the in‐plane motion of the left ventricle in first‐pass myocardial perfusion. The image mask including the left and right ventricle was found to be more robust than including the left ventricle alone. A smooth estimate of normalized mutual information coefficients were achieved for images with large contrast changes.
Conclusion
The proposed semiautomatic multiresolution registration algorithm was able to register first‐pass MR myocardial perfusion images and may be useful in quantitative perfusion analysis. J. Magn. Reson. Imaging 2008. © 2008 Wiley‐Liss, Inc.
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