Quantitative mapping of trimethyltin injury in the rat brain using magnetic resonance histology.

dc.contributor.author

Johnson, G Allan

dc.contributor.author

Calabrese, Evan

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Little, Peter B

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Hedlund, Laurence

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Qi, Yi

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Badea, Alexandra

dc.coverage.spatial

Netherlands

dc.date.accessioned

2015-07-28T15:27:30Z

dc.date.issued

2014-05

dc.description.abstract

The growing exposure to chemicals in our environment and the increasing concern over their impact on health have elevated the need for new methods for surveying the detrimental effects of these compounds. Today's gold standard for assessing the effects of toxicants on the brain is based on hematoxylin and eosin (H&E)-stained histology, sometimes accompanied by special stains or immunohistochemistry for neural processes and myelin. This approach is time-consuming and is usually limited to a fraction of the total brain volume. We demonstrate that magnetic resonance histology (MRH) can be used for quantitatively assessing the effects of central nervous system toxicants in rat models. We show that subtle and sparse changes to brain structure can be detected using magnetic resonance histology, and correspond to some of the locations in which lesions are found by traditional pathological examination. We report for the first time diffusion tensor image-based detection of changes in white matter regions, including fimbria and corpus callosum, in the brains of rats exposed to 8 mg/kg and 12 mg/kg trimethyltin. Besides detecting brain-wide changes, magnetic resonance histology provides a quantitative assessment of dose-dependent effects. These effects can be found in different magnetic resonance contrast mechanisms, providing multivariate biomarkers for the same spatial location. In this study, deformation-based morphometry detected areas where previous studies have detected cell loss, while voxel-wise analyses of diffusion tensor parameters revealed microstructural changes due to such things as cellular swelling, apoptosis, and inflammation. Magnetic resonance histology brings a valuable addition to pathology with the ability to generate brain-wide quantitative parametric maps for markers of toxic insults in the rodent brain.

dc.identifier

http://www.ncbi.nlm.nih.gov/pubmed/24631313

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S0161-813X(14)00032-1

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1872-9711

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https://hdl.handle.net/10161/10329

dc.language

eng

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Elsevier BV

dc.relation.ispartof

Neurotoxicology

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10.1016/j.neuro.2014.02.009

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Animal models

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Environmental toxins

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MRI

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Rat

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Trimethyltin

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Animals

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Diffusion Magnetic Resonance Imaging

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Diffusion Tensor Imaging

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Dose-Response Relationship, Drug

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Environmental Pollutants

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Histological Techniques

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Male

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Rats

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Trimethyltin Compounds

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White Matter

dc.title

Quantitative mapping of trimethyltin injury in the rat brain using magnetic resonance histology.

dc.type

Journal article

duke.contributor.orcid

Johnson, G Allan|0000-0002-7606-5447

duke.contributor.orcid

Calabrese, Evan|0000-0002-1464-0354

duke.contributor.orcid

Badea, Alexandra|0000-0001-6621-4560

pubs.author-url

http://www.ncbi.nlm.nih.gov/pubmed/24631313

pubs.begin-page

12

pubs.end-page

23

pubs.organisational-group

Clinical Science Departments

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Duke

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Duke Cancer Institute

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Institutes and Centers

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Physics

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Radiology

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School of Medicine

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Staff

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Trinity College of Arts & Sciences

pubs.publication-status

Published

pubs.volume

42

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