A modified damped Richardson-Lucy algorithm to reduce isotropic background effects in spherical deconvolution

被引:242
作者
Dell'Acqua, Flavio [1 ,2 ,3 ,4 ]
Scifo, Paola [2 ,3 ]
Rizzo, Giovanna [3 ,5 ]
Catani, Marco
Simmons, Andrew [4 ]
Scotti, Giuseppe [2 ]
Fazio, Ferruccio [3 ,6 ]
机构
[1] Kings Coll London, Inst Psychiat, Natbrainlab, Sect Brain Maturat, London SE5 8AF, England
[2] Ist Sci San Raffaele, CERMAC, I-20132 Milan, Italy
[3] Ist Sci San Raffaele, Nucl Med Unit, I-20132 Milan, Italy
[4] S London & Maudsley NHS Fdn Trust, NIHR Specialist Biomed Res Ctr Mental Hlth, London, England
[5] CNR, Inst Mol Bioimaging & Physiol, I-20133 Milan, Italy
[6] Univ Milano Bicocca, Milan, Italy
关键词
Diffusion MRI; Fibre crossing; Spherical deconvolution; Richardson Lucy algorithm; Isotropic partial volume; SPACE RECONSTRUCTION ALGORITHM; FIBER ORIENTATION; HUMAN BRAIN; DIFFUSION; MRI; TRACTOGRAPHY; FRAMEWORK; DENSITY; ARCHITECTURE; UNCERTAINTY;
D O I
10.1016/j.neuroimage.2009.09.033
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Spherical deconvolution methods have been applied to diffusion MRI to improve diffusion tensor tractography results in brain regions with multiple fibre crossing. Recent developments, such as the introduction of non-negative constraints on the solution, allow a more accurate estimation of fibre orientations by reducing instability effects due to noise robustness. Standard convolution methods do not, however, adequately model the effects of partial volume from isotropic tissue, such as gray matter, or cerebrospinal fluid, which may degrade spherical deconvolution results. Here we use a newly developed spherical deconvolution algorithm based on an adaptive regularization (damped version of the Richardson-Lucy algorithm) to reduce isotropic partial volume effects. Results from both simulated and in vivo datasets show that, compared to a standard non-negative constrained algorithm, the damped Richardson-Lucy algorithm reduces spurious fibre orientations and preserves angular resolution of the main fibre orientations. These findings suggest that, in some brain regions, non-negative constraints alone may not be sufficient to reduce spurious fibre orientations. Considering both the speed of processing and the scan time required, this new method has the potential for better characterizing white matter anatomy and the integrity of pathological tissue. (C) 2009 Elsevier Inc. All rights reserved.
引用
收藏
页码:1446 / 1458
页数:13
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