Literature DB >> 20945352

An ex vivo imaging pipeline for producing high-quality and high-resolution diffusion-weighted imaging datasets.

Tim B Dyrby1, William F C Baaré, Daniel C Alexander, Jacob Jelsing, Ellen Garde, Lise V Søgaard.   

Abstract

Diffusion tensor (DT) imaging and related multifiber reconstruction algorithms allow the study of in vivo microstructure and, by means of tractography, structural connectivity. Although reconstruction algorithms are promising imaging tools, high-quality diffusion-weighted imaging (DWI) datasets for verification and validation of postprocessing and analysis methods are lacking. Clinical in vivo DWI is limited by, for example, physiological noise and low signal-to-noise ratio. Here, we performed a series of DWI measurements on postmortem pig brains, which resemble the human brain in neuroanatomical complexity, to establish an ex vivo imaging pipeline for generating high-quality DWI datasets. Perfusion fixation ensured that tissue characteristics were comparable to in vivo conditions. There were three main results: (i) heat conduction and unstable tissue mechanics accounted for time-varying artefacts in the DWI dataset, which were present for up to 15 h after positioning brain tissue in the scanner; (ii) using fitted DT, q-ball, and persistent angular structure magnetic resonance imaging algorithms, any b-value between ∼2,000 and ∼8,000 s/mm(2) , with an optimal value around 4,000 s/mm(2) , allowed for consistent reconstruction of fiber directions; (iii) diffusivity measures in the postmortem brain tissue were stable over a 3-year period. On the basis of these results, we established an optimized ex vivo pipeline for high-quality and high-resolution DWI. The pipeline produces DWI data sets with a high level of tissue structure detail showing for example two parallel horizontal rims in the cerebral cortex and multiple rims in the hippocampus. We conclude that high-quality ex vivo DWI can be used to validate fiber reconstruction algorithms and to complement histological studies.
Copyright © 2010 Wiley-Liss, Inc.

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Year:  2011        PMID: 20945352      PMCID: PMC6870191          DOI: 10.1002/hbm.21043

Source DB:  PubMed          Journal:  Hum Brain Mapp        ISSN: 1065-9471            Impact factor:   5.038


  63 in total

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6.  High resolution diffusion-weighted imaging in fixed human brain using diffusion-weighted steady state free precession.

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9.  Postmortem MR imaging of formalin-fixed human brain.

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5.  A diffusion tensor MRI atlas of the postmortem rhesus macaque brain.

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6.  Histologically derived fiber response functions for diffusion MRI vary across white matter fibers-An ex vivo validation study in the squirrel monkey brain.

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7.  Cortical fibers orientation mapping using in-vivo whole brain 7 T diffusion MRI.

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8.  Layer-specific intracortical connectivity revealed with diffusion MRI.

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Review 10.  The role of tissue microstructure and water exchange in biophysical modelling of diffusion in white matter.

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