Literature DB >> 28703635

Quantitative diffusion tensor imaging analysis does not distinguish pediatric canines with mucopolysaccharidosis I from control canines.

Dana M Middleton1, Jonathan Y Li1, Steven D Chen2, Leonard E White3, Patricia I Dickson4, N Matthew Ellinwood5, James M Provenzale2.   

Abstract

Purpose We compared fractional anisotropy and radial diffusivity measurements between pediatric canines affected with mucopolysaccharidosis I and pediatric control canines. We hypothesized that lower fractional anisotropy and higher radial diffusivity values, consistent with dysmyelination, would be present in the mucopolysaccharidosis I cohort. Methods Six canine brains, three affected with mucopolysaccharidosis I and three unaffected, were euthanized at 7 weeks and imaged using a 7T small-animal magnetic resonance imaging system. Average fractional anisotropy and radial diffusivity values were calculated for four white-matter regions based on 100 regions of interest per region per specimen. A 95% confidence interval was calculated for each mean value. Results No difference was seen in fractional anisotropy or radial diffusivity values between mucopolysaccharidosis affected and unaffected brains in any region. In particular, the 95% confidence intervals for mucopolysaccharidosis affected and unaffected canines frequently overlapped for both fractional anisotropy and radial diffusivity measurements. In addition, in some brain regions a large range of fractional anisotropy and radial diffusivity values were seen within the same cohort. Conclusion The fractional anisotropy and radial diffusivity values of white matter did not differ between pediatric mucopolysaccharidosis affected canines and pediatric control canines. Possible explanations include: (a) a lack of white matter tissue differences between mucopolysaccharidosis affected and unaffected brains at early disease stages; (b) diffusion tensor imaging does not detect any existing differences; (c) inflammatory processes such as astrogliosis produce changes that offset the decreased fractional anisotropy values and increased radial diffusivity values that are expected in dysmyelination; and (d) our sample size was insufficient to detect differences. Further studies correlating diffusion tensor imaging findings to histology are warranted.

Entities:  

Keywords:  Mucopolysaccharidosis; canine; diffusion tensor imaging; fractional anisotropy; radial diffusivity

Mesh:

Year:  2017        PMID: 28703635      PMCID: PMC5602339          DOI: 10.1177/1971400917718844

Source DB:  PubMed          Journal:  Neuroradiol J        ISSN: 1971-4009


  32 in total

Review 1.  The basis of anisotropic water diffusion in the nervous system - a technical review.

Authors:  Christian Beaulieu
Journal:  NMR Biomed       Date:  2002 Nov-Dec       Impact factor: 4.044

2.  Absolute eigenvalue diffusion tensor analysis for human brain maturation.

Authors:  Yuji Suzuki; Hitoshi Matsuzawa; Ingrid L Kwee; Tsutomu Nakada
Journal:  NMR Biomed       Date:  2003-08       Impact factor: 4.044

3.  Diffusion-weighted MR imaging in the brain in children: findings in the normal brain and in the brain with white matter diseases.

Authors:  Volkher Engelbrecht; Axel Scherer; Margarethe Rassek; Hans J Witsack; Ulrich Mödder
Journal:  Radiology       Date:  2002-02       Impact factor: 11.105

4.  Dysmyelination revealed through MRI as increased radial (but unchanged axial) diffusion of water.

Authors:  Sheng-Kwei Song; Shu-Wei Sun; Michael J Ramsbottom; Chen Chang; John Russell; Anne H Cross
Journal:  Neuroimage       Date:  2002-11       Impact factor: 6.556

5.  Diffusion anisotropy in the corpus callosum.

Authors:  Neeraj B Chepuri; Yi-Fen Yen; Jonathan H Burdette; Hong Li; Dixon M Moody; Joseph A Maldjian
Journal:  AJNR Am J Neuroradiol       Date:  2002-05       Impact factor: 3.825

6.  Demyelination increases radial diffusivity in corpus callosum of mouse brain.

Authors:  Sheng-Kwei Song; Jun Yoshino; Tuan Q Le; Shiow-Jiuan Lin; Shu-Wei Sun; Anne H Cross; Regina C Armstrong
Journal:  Neuroimage       Date:  2005-05-15       Impact factor: 6.556

7.  Diffusion tensor brain MR imaging in X-linked cerebral adrenoleukodystrophy.

Authors:  R Ito; E R Melhem; S Mori; F S Eichler; G V Raymond; H W Moser
Journal:  Neurology       Date:  2001-02-27       Impact factor: 9.910

8.  Noninvasive detection of cuprizone induced axonal damage and demyelination in the mouse corpus callosum.

Authors:  Shu-Wei Sun; Hsiao-Fang Liang; Kathryn Trinkaus; Anne H Cross; Regina C Armstrong; Sheng-Kwei Song
Journal:  Magn Reson Med       Date:  2006-02       Impact factor: 4.668

9.  Myelination and long diffusion times alter diffusion-tensor-imaging contrast in myelin-deficient shiverer mice.

Authors:  Govind Nair; Yusuke Tanahashi; Hoi Pang Low; Susan Billings-Gagliardi; William J Schwartz; Timothy Q Duong
Journal:  Neuroimage       Date:  2005-07-14       Impact factor: 6.556

10.  Activated microglia in cortex of mouse models of mucopolysaccharidoses I and IIIB.

Authors:  Kazuhiro Ohmi; David S Greenberg; Kavitha S Rajavel; Sergey Ryazantsev; Hong Hua Li; Elizabeth F Neufeld
Journal:  Proc Natl Acad Sci U S A       Date:  2003-02-07       Impact factor: 11.205

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