학술논문

Improved Myocardial Motion Estimation Combining Tissue Doppler and B-Mode Echocardiographic Images
Document Type
Periodical
Source
IEEE Transactions on Medical Imaging IEEE Trans. Med. Imaging Medical Imaging, IEEE Transactions on. 33(11):2098-2106 Nov, 2014
Subject
Bioengineering
Computing and Processing
Doppler effect
Imaging
Transforms
Splines (mathematics)
Velocity measurement
Transducers
Myocardium
Echocardiography
free form deformation (FFD)
image registration
motion estimation
multi-modal integration
temporal diffeomorphic free form deformation (TDFFD)
tissue Doppler
ultrasound (US)
Language
ISSN
0278-0062
1558-254X
Abstract
We propose a technique for myocardial motion estimation based on image registration using both B-mode echocardiographic images and tissue Doppler sequences acquired interleaved. The velocity field is modeled continuously using B-splines and the spatiotemporal transform is constrained to be diffeomorphic. Images before scan conversion are used to improve the accuracy of the estimation. The similarity measure includes a model of the speckle pattern distribution of B-mode images. It also penalizes the disagreement between tissue Doppler velocities and the estimated velocity field. Registration accuracy is evaluated and compared to other alternatives using a realistic synthetic dataset, obtaining mean displacement errors of about 1 mm. Finally, the method is demonstrated on data acquired from six volunteers, both at rest and during exercise. Robustness is tested against low image quality and fast heart rates during exercise. Results show that our method provides a robust motion estimate in these situations.