Literature DB >> 19403788

In vivo measurement of axon diameter distribution in the corpus callosum of rat brain.

Daniel Barazany1, Peter J Basser, Yaniv Assaf.   

Abstract

Here, we present the first in vivo non-invasive measurement of the axon diameter distribution in the rat corpus callosum. Previously, this measurement was only possible using invasive histological methods. The axon diameter, along with other physical properties, such as the intra-axonal resistance, membrane resistance and capacitance etc. helps determine many important functional properties of nerves, such as their conduction velocity. In this work, we provide a novel magnetic resonance imaging method called AxCaliber, which can resolve the distinct signatures of trapped water molecules diffusing within axons as well as water molecules diffusing freely within the extra-axonal space. Using a series of diffusion weighted magnetic resonance imaging brain scans, we can reliably infer both the distribution of axon diameters and the volume fraction of these axons within each white matter voxel. We were able to verify the known microstructural variation along the corpus callosum of the rat from the anterior (genu) to posterior (splenium) regions. AxCaliber yields a narrow distribution centered approximately 1 microm in the genu and splenium and much broader distributions centered approximately 3 microm in the body of the corpus callosum. The axon diameter distribution found by AxCaliber is generally broader than those usually obtained by histology. One factor contributing to this difference is the significant tissue shrinkage that results from histological preparation. To that end, AxCaliber might provide a better estimate of the in vivo morphology of white matter. Being a magnetic resonance imaging based methodology, AxCaliber has the potential to be used in human scanners for morphological studies of white matter in normal and abnormal development, and white matter related diseases.

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Year:  2009        PMID: 19403788      PMCID: PMC2677796          DOI: 10.1093/brain/awp042

Source DB:  PubMed          Journal:  Brain        ISSN: 0006-8950            Impact factor:   13.501


  34 in total

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Authors:  R Olivares; J Montiel; F Aboitiz
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Authors:  F Aboitiz; A B Scheibel; R S Fisher; E Zaidel
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Review 5.  Diffusion tensor imaging (DTI)-based white matter mapping in brain research: a review.

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Authors:  P J Basser; C Pierpaoli
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7.  An analytical model of restricted diffusion in bovine optic nerve.

Authors:  G J Stanisz; A Szafer; G A Wright; R M Henkelman
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8.  An MRI study of the corpus callosum in autism.

Authors:  J Piven; J Bailey; B J Ranson; S Arndt
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10.  Callosal size in children with learning disabilities.

Authors:  C Njiokiktjien; L de Sonneville; J Vaal
Journal:  Behav Brain Res       Date:  1994-10-20       Impact factor: 3.332

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  172 in total

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Review 5.  The Neurobiological Grounding of Persistent Stuttering: from Structure to Function.

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Journal:  Curr Neurol Neurosci Rep       Date:  2015-09       Impact factor: 5.081

6.  Ball and rackets: Inferring fiber fanning from diffusion-weighted MRI.

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7.  Tissue microstructure features derived from anomalous diffusion measurements in magnetic resonance imaging.

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8.  The impact of gradient strength on in vivo diffusion MRI estimates of axon diameter.

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9.  "Can touch this": Cross-modal shape categorization performance is associated with microstructural characteristics of white matter association pathways.

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10.  g-Ratio weighted imaging of the human spinal cord in vivo.

Authors:  T Duval; S Le Vy; N Stikov; J Campbell; A Mezer; T Witzel; B Keil; V Smith; L L Wald; E Klawiter; J Cohen-Adad
Journal:  Neuroimage       Date:  2016-09-22       Impact factor: 6.556

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