The Superiority of Tsallis Entropy over Traditional Cost Functions for Brain MRI and SPECT Registration

Neuroimage registration has an important role in clinical (for both diagnostic and therapeutic purposes) and research applications. In this article we describe the applicability of Tsallis Entropy as a new cost function for neuroimage registration through a comparative analysis based on the performa...

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Published inEntropy (Basel, Switzerland) Vol. 16; no. 3; pp. 1632 - 1651
Main Authors Amaral-Silva, Henrique, Wichert-Ana, Lauro, Murta, Luiz, Romualdo-Suzuki, Larissa, Itikawa, Emerson, Bussato, Geraldo, Azevedo-Marques, Paulo
Format Journal Article
LanguageEnglish
Published Basel MDPI AG 01.03.2014
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Abstract Neuroimage registration has an important role in clinical (for both diagnostic and therapeutic purposes) and research applications. In this article we describe the applicability of Tsallis Entropy as a new cost function for neuroimage registration through a comparative analysis based on the performance of the traditional approaches (correlation based: Entropy Correlation Coefficient (ECC) and Normalized Cross Correlation (NCC); and Mutual Information (MI) based: Mutual Information using Shannon Entropy (MIS) and Normalized Mutual Information (NMI)) and the proposed one based on MI using Tsallis entropy (MIT). We created phantoms with known geometric transformations using Single Photon Emission Computed Tomography (SPECT) and Magnetic Resonance Imaging from 3 morphologically normal subjects. The simulated volumes were registered to the original ones using both the proposed and traditional approaches. The comparative analysis of the Relative Error (RE) showed that MIT was more accurate in the intra-modality registration, whereas for inter-modality registration, MIT presented the lowest RE for rotational transformations, and the ECC the lowest RE for translational transformations. In conclusion, we have shown that, with certain limitations, Tsallis Entropy has application as a better cost function for reliable neuroimage registration.
AbstractList Neuroimage registration has an important role in clinical (for both diagnostic and therapeutic purposes) and research applications. In this article we describe the applicability of Tsallis Entropy as a new cost function for neuroimage registration through a comparative analysis based on the performance of the traditional approaches (correlation based: Entropy Correlation Coefficient (ECC) and Normalized Cross Correlation (NCC); and Mutual Information (MI) based: Mutual Information using Shannon Entropy (MIS) and Normalized Mutual Information (NMI)) and the proposed one based on MI using Tsallis entropy (MIT). We created phantoms with known geometric transformations using Single Photon Emission Computed Tomography (SPECT) and Magnetic Resonance Imaging from 3 morphologically normal subjects. The simulated volumes were registered to the original ones using both the proposed and traditional approaches. The comparative analysis of the Relative Error (RE) showed that MIT was more accurate in the intra-modality registration, whereas for inter-modality registration, MIT presented the lowest RE for rotational transformations, and the ECC the lowest RE for translational transformations. In conclusion, we have shown that, with certain limitations, Tsallis Entropy has application as a better cost function for reliable neuroimage registration.
Author Murta, Luiz
Amaral-Silva, Henrique
Wichert-Ana, Lauro
Azevedo-Marques, Paulo
Bussato, Geraldo
Itikawa, Emerson
Romualdo-Suzuki, Larissa
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Snippet Neuroimage registration has an important role in clinical (for both diagnostic and therapeutic purposes) and research applications. In this article we describe...
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SubjectTerms Computer simulation
Cost function
Cross correlation
Entropy
Error analysis
Magnetic resonance imaging
MRI
mutual information
neuroimaging
registration
SPECT
Tomography
Transformations
Tsallis entropy
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Title The Superiority of Tsallis Entropy over Traditional Cost Functions for Brain MRI and SPECT Registration
URI https://www.proquest.com/docview/1537834324
https://www.proquest.com/docview/1559722675
https://www.proquest.com/docview/1671593252
https://doaj.org/article/9ed4f4d7e1eb4e97858f3ae97f43ac26
Volume 16
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