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AJNR Awards, New Junior Editors, and more. Read the latest AJNR updates

Research ArticleAdult Brain
Open Access

Performance Assessment for Brain MR Imaging Registration Methods

J.S. Lin, D.T. Fuentes, A. Chandler, S.S. Prabhu, J.S. Weinberg, V. Baladandayuthapani, J.D. Hazle and D. Schellingerhout
American Journal of Neuroradiology May 2017, 38 (5) 973-980; DOI: https://doi.org/10.3174/ajnr.A5122
J.S. Lin
aFrom the Department of Bioengineering (J.S.L.), Rice University, Houston, Texas
bDepartments of Imaging Physics (J.S.L., D.T.F., A.C., J.D.H.)
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D.T. Fuentes
bDepartments of Imaging Physics (J.S.L., D.T.F., A.C., J.D.H.)
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A. Chandler
bDepartments of Imaging Physics (J.S.L., D.T.F., A.C., J.D.H.)
gMolecular Imaging and Computed Tomography Research (A.C.), GE Healthcare, Milwaukee, Wisconsin.
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S.S. Prabhu
cNeurosurgery (S.S.P., J.S.W.)
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J.S. Weinberg
cNeurosurgery (S.S.P., J.S.W.)
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V. Baladandayuthapani
dBiostatistics (V.B.)
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J.D. Hazle
bDepartments of Imaging Physics (J.S.L., D.T.F., A.C., J.D.H.)
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D. Schellingerhout
eDiagnostic Radiology (D.S.)
fCancer Systems Imaging (D.S.), University of Texas M.D. Anderson Cancer Center, Houston, Texas
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Abstract

BACKGROUND AND PURPOSE: Clinical brain MR imaging registration algorithms are often made available by commercial vendors without figures of merit. The purpose of this study was to suggest a rational performance comparison methodology for these products.

MATERIALS AND METHODS: Twenty patients were imaged on clinical 3T scanners by using 4 sequences: T2-weighted, FLAIR, susceptibility-weighted angiography, and T1 postcontrast. Fiducial landmark sites (n = 1175) were specified throughout these image volumes to define identical anatomic locations across sequences. Multiple registration algorithms were applied by using the T2 sequence as a fixed reference. Euclidean error was calculated before and after each registration and compared with a criterion standard landmark registration. The Euclidean effectiveness ratio is the fraction of Euclidean error remaining after registration, and the statistical effectiveness ratio is similar, but accounts for dispersion and noise.

RESULTS: Before registration, error values for FLAIR, susceptibility-weighted angiography, and T1 postcontrast were 2.07 ± 0.55 mm, 2.63 ± 0.62 mm, and 3.65 ± 2.00 mm, respectively. Postregistration, the best error values for FLAIR, susceptibility-weighted angiography, and T1 postcontrast were 1.55 ± 0.46 mm, 1.34 ± 0.23 mm, and 1.06 ± 0.16 mm, with Euclidean effectiveness ratio values of 0.493, 0.181, and 0.096 and statistical effectiveness ratio values of 0.573, 0.352, and 0.929 for rigid mutual information, affine mutual information, and a commercial GE registration, respectively.

CONCLUSIONS: We demonstrate a method for comparing the performance of registration algorithms and suggest the Euclidean error, Euclidean effectiveness ratio, and statistical effectiveness ratio as performance metrics for clinical registration algorithms. These figures of merit allow registration algorithms to be rationally compared.

ABBREVIATIONS:

ANTs
advanced normalization tools
AOI
algorithm of interest
CC
cross-correlation
EER
Euclidean effectiveness ratio
LM
landmarks
MI
mutual information
SER
statistical effectiveness ratio
SWAN
susceptibility-weighted angiography
T1C
T1 postcontrast
TRE
target-to-registration error
  • © 2017 by American Journal of Neuroradiology

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American Journal of Neuroradiology: 38 (5)
American Journal of Neuroradiology
Vol. 38, Issue 5
1 May 2017
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Cite this article
J.S. Lin, D.T. Fuentes, A. Chandler, S.S. Prabhu, J.S. Weinberg, V. Baladandayuthapani, J.D. Hazle, D. Schellingerhout
Performance Assessment for Brain MR Imaging Registration Methods
American Journal of Neuroradiology May 2017, 38 (5) 973-980; DOI: 10.3174/ajnr.A5122

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Performance Assessment for Brain MR Imaging Registration Methods
J.S. Lin, D.T. Fuentes, A. Chandler, S.S. Prabhu, J.S. Weinberg, V. Baladandayuthapani, J.D. Hazle, D. Schellingerhout
American Journal of Neuroradiology May 2017, 38 (5) 973-980; DOI: 10.3174/ajnr.A5122
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