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Elucidating intravoxel geometry in diffusion-MRI: Asymmetric orientation distribution functions (AODFs) revealed by a cone model

  • Sabanci University
  • Bogazici University

Araştırma çıktısı: Kitap/Rapor/Konferans Bildirisinde BölümBölümHakem

8 Atıf (Scopus)

Özet

A diffusion-MRI processing method is presented for representing the inherent asymmetry of the underlying intravoxel geometry, which emerges in regions with bending, crossing, or sprouting fibers. The orientation distribution functions (ODFs) obtained through conventional approaches such as q-ball imaging and spherical deconvolution result in symmetric ODF profiles at each voxel even when the underlying geometry is asymmetric. To extract such inherent asymmetry, an inter-voxel filtering approach through a cone model is employed. The cone model facilitates a sharpening of the ODFs in some directions while suppressing peaks in other directions, thus yielding an asymmetric ODF (AODF) field. Compared to symmetric ODFs, AODFs reveal more information regarding the cytoarchitectural organization within the voxel. The level of asymmetry is quantified via a new scalar index that could complement standard measures of diffusion anisotropy. Experiments on synthetic geometries of circular, crossing, and kissing fibers show that the estimated AODFs successfully recover the asymmetry of the underlying geometry. The feasibility of the technique is demonstrated on in vivo data obtained from the Human Connectome Project.

Orijinal dilİngilizce
Ana bilgisayar yayını başlığıLecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)
YayınlayanSpringer Verlag
Sayfalar231-238
Sayfa sayısı8
DOI'lar
Yayın durumuYayınlandı - 2015
Harici olarak yayınlandıEvet

Yayın serisi

AdıLecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)
Hacim9349
ISSN (Basılı)0302-9743
ISSN (Elektronik)1611-3349

Bibliyografik not

Publisher Copyright:
© Springer International Publishing Switzerland 2015.

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